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小型衛星市場:質量(小型衛星、キューブサット)、用途、サブシステム(衛星バス、ペイロード、ソーラーパネル、衛星アンテナ)、周波数、最終用途(商業、政府・防衛、デュアルユース)、軌道、地域別 - 2028年までの世界予測


Small Satellite Market by Mass (Small Satellite, CubeSat), Application, Subsystems (Satellite Bus, Payload, Solar Panel, Satellite Antenna), Frequency, End-use (Commercial, Government & Defence, Dual-use), Orbit and Region - Global Forecast to 2028

小型衛星市場は、2022年の32億米ドルから2028年には70億米ドルに成長すると予測されており、予測期間中の年平均成長率は16.8%となっています。この市場の成長は、軍事ミッションや商業用途で安全な衛星通信へのニ... もっと見る

 

 

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MarketsandMarkets
マーケッツアンドマーケッツ
2023年3月31日 US$4,950
シングルユーザライセンス
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サマリー

小型衛星市場は、2022年の32億米ドルから2028年には70億米ドルに成長すると予測されており、予測期間中の年平均成長率は16.8%となっています。この市場の成長は、軍事ミッションや商業用途で安全な衛星通信へのニーズが高まっていることに起因しています。また、レーザー/光バンド通信技術など、小型衛星システムの技術進歩が市場を牽引しています。

予測期間中は、キューブサットセグメントが最も高いCAGRを記録すると予測される。
質量に基づくと、小型衛星市場のキューブサットセグメントは、予測期間中に最も高い成長率を維持すると予測されます。キューブサットは、その低コストと迅速な納期により、政府、大学、民間企業によるさまざまなミッションに使用されています。また、新技術の開発や打ち上げシステムの改善も、キューブサット市場の成長に寄与しています。

周波数別では、レーザー/光バンドセグメントが小型衛星市場を支配すると予測される
周波数別では、レーザー/オプティカルバンドが予測期間中に市場シェアを独占すると予測されます。レーザー/光バンドは、通信機能を強化します。最も有望な商用アプリケーションは、高性能な光バックボーンネットワークを構築するための衛星や高高度プラットフォームの相互接続で見つけることができます。SpaceX、Facebook、Googleのような企業や一連の新興企業は現在、レーザー通信技術に基づく様々なコンセプトに取り組んでいる。

2023年、北米が最大の市場シェアを占めると予想される
小型衛星市場産業は、北米、欧州、アジア太平洋、中東・アフリカ、中南米で調査しています。2022年の市場シェアは、北米が最大となった。北米では米国が市場をリードしており、多数の企業や新興企業がこの業界で事業を展開しています。また、同国にはSpaceX、Blue Origin、Planet Labsなど、世界有数の小型衛星メーカーやオペレーターが存在する。


小型衛星市場の主要な参加者のプロファイルの内訳:
- 企業タイプ別:Tier 1 - 40%、Tier 2 - 30%、Tier 3 - 30%。
- 役職別Cレベル:30%、ディレクター:20%、その他:50
- 地域別北米:35%、欧州:20%、アジア太平洋:30%、中東・アフリカ:10%、中南米:5%。
著名な企業には、Sierra Nevada Corporation(米国)、L3Harris Technologies, Inc(米国)、Lockheed Martin Corporation(米国)、Northrop Grumman Corporation(米国)、Airbus Defence and Space(ドイツ)などです。

研究対象です:

この調査レポートは、小型衛星市場をアプリケーション別(通信、地球観測、教育、技術、その他)、サブシステム別(衛星バス、ペイロード、ソーラーパネル、衛星アンテナ、その他)、軌道別(LEO、GEO、MEO、その他)、質量別(小型衛星)に分類しています、CubeSat)、エンドユース(商業、政府・防衛)、周波数(Lバンド、Sバンド、Cバンド、Xバンド、Kuバンド、Kaバンド、Q/Vバンド、HF/VHF-UHFバンド、レーザー/光学)、地域(北米、欧州、アジア太平洋、中東・アフリカ、中南米)別です。小型衛星市場の成長に影響を与える推進要因、阻害要因、課題、機会などの主要要因に関する詳細情報を網羅しています。主要な業界プレイヤーを詳細に分析し、事業概要、ソリューション、サービス、主要戦略、契約、パートナーシップ、協定、新製品・サービスの発表、M&A、小型衛星市場に関連する最近の動向に関する洞察を提供しています。小型衛星市場のエコシステムにおける今後の新興企業の競争力分析も本レポートで取り上げています。
本レポートを購入する理由
本レポートは、小型衛星市場全体とサブセグメントの収益数値の最も近い近似値に関する情報を提供し、本市場の市場リーダー/新規参入者に役立つことでしょう。本レポートは、関係者が競争環境を理解し、より多くの洞察を得て、自社のビジネスをより良く位置づけ、適切な市場参入戦略を計画するのに役立ちます。また、本レポートは、関係者が市場の鼓動を理解するのに役立ち、主要な市場促進要因、阻害要因、課題、および機会に関する情報を提供します。

本レポートでは、以下のポイントについて考察しています:
- 市場の浸透度:市場のトッププレーヤーが提供する小型衛星に関する包括的な情報

- 製品開発/イノベーション:小型衛星市場における今後の技術、研究開発活動、新製品・新サービスの発売に関する詳細な考察

- 市場開拓:有利な市場に関する包括的な情報 - 当レポートは、様々な地域の小型衛星市場を分析しています。

- 市場の多様化:小型衛星市場における新製品・サービス、未開拓の地域、最近の開発、投資に関する情報を網羅的に提供

- 競争力のある評価:小型衛星市場における主要企業の市場シェア、成長戦略、サービス内容などを詳細に評価

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目次

1 INTRODUCTION 41
1.1 STUDY OBJECTIVES 41
1.2 MARKET DEFINITION 41
1.3 INCLUSIONS AND EXCLUSIONS 42
1.3.1 MARKETS COVERED 42
FIGURE 1 SMALL SATELLITE MARKET SEGMENTATION 42
1.3.2 REGIONAL SCOPE 43
1.3.3 YEARS CONSIDERED 43
1.4 CURRENCY AND PRICING 44
TABLE 1 USD EXCHANGE RATES 44
1.5 LIMITATIONS 44
1.6 STAKEHOLDERS 45
1.7 SUMMARY OF CHANGES 45
2 RESEARCH METHODOLOGY 46
2.1 RESEARCH DATA 46
FIGURE 2 RESEARCH PROCESS FLOW 46
FIGURE 3 RESEARCH DESIGN 47
2.1.1 SECONDARY DATA 47
2.1.1.1 Secondary sources 48
2.1.2 PRIMARY DATA 48
2.1.2.1 Key data from primary sources 49
2.1.2.2 Key data from primary sources 49
2.1.2.3 Key primary sources 50
2.1.3 BREAKDOWN OF PRIMARIES 50
FIGURE 4 BREAKDOWN OF PRIMARY INTERVIEWS: BY COMPANY TYPE, DESIGNATION, AND REGION 50
2.2 FACTOR ANALYSIS 51
2.2.1 INTRODUCTION 51
2.2.2 DEMAND-SIDE INDICATORS 51
2.2.3 SUPPLY-SIDE INDICATORS 51
2.2.4 SEGMENTS AND SUBSEGMENTS 52
2.3 RESEARCH APPROACH AND METHODOLOGY 53
2.3.1 BOTTOM-UP APPROACH 53
2.3.1.1 Market size estimation & methodology 53
FIGURE 5 MARKET SIZE ESTIMATION METHODOLOGY: BOTTOM-UP APPROACH 54
2.3.2 TOP-DOWN APPROACH 54
FIGURE 6 MARKET SIZE ESTIMATION METHODOLOGY: TOP-DOWN APPROACH 54
2.4 DATA TRIANGULATION 55
FIGURE 7 DATA TRIANGULATION 55
2.5 RECESSION IMPACT ANALYSIS 56
2.6 RESEARCH ASSUMPTIONS 56
TABLE 2 PARAMETRIC ASSUMPTIONS MADE FOR MARKET FORECAST 56
2.7 LIMITATIONS 56
2.8 RISK ANALYSIS 56
3 EXECUTIVE SUMMARY 57
FIGURE 8 MINISATELLITES SEGMENT TO LEAD MARKET FROM 2023 TO 2028 58
FIGURE 9 COMMERCIAL SEGMENT PROJECTED TO DOMINATE MARKET DURING FORECAST PERIOD 58
FIGURE 10 EARTH OBSERVATION SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 59
FIGURE 11 LOW EARTH ORBIT SEGMENT TO GROW AT HIGHEST RATE DURING FORECAST PERIOD 59
FIGURE 12 LASER/OPTICAL SEGMENT TO GROW AT HIGHEST RATE DURING FORECAST PERIOD 60
FIGURE 13 NORTH AMERICA ESTIMATED TO ACCOUNT FOR LARGEST MARKET SHARE IN 2023 60
4 PREMIUM INSIGHTS 62
4.1 ATTRACTIVE GROWTH OPPORTUNITIES FOR PLAYERS IN SMALL SATELLITE MARKET 62
FIGURE 14 INCREASING USE OF SMALL SATELLITES FOR TRACKING, MONITORING, AND SURVEILLANCE TO DRIVE MARKET 62
4.2 SMALL SATELLITE MARKET, BY SUBSYSTEM 62
FIGURE 15 SATELLITE BUS SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 62
4.3 SMALL SATELLITE BUS MARKET, BY SUBTYPE 63
FIGURE 16 ATTITUDE & ORBITAL CONTROL SYSTEM SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 63
4.4 SMALL SATELLITE PROPULSION MARKET, BY TYPE 63
FIGURE 17 CHEMICAL PROPULSION SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 63
4.5 SMALL SATELLITE PAYLOAD MARKET, BY PAYLOAD TYPE 64
FIGURE 18 TRADITIONAL PAYLOAD SEGMENT TO ACCOUNT FOR LARGER MARKET SHARE THROUGHOUT FORECAST PERIOD 64
4.6 SMALL SATELLITE PAYLOAD MARKET, BY TRADITIONAL PAYLOAD TYPE 64
FIGURE 19 OPTICAL & INFRARED SEGMENT PROJECTED TO LEAD MARKET DURING FORECAST PERIOD 64
4.7 SMALL SATELLITE MARKET, BY COUNTRY 65
FIGURE 20 SMALL SATELLITE MARKET IN JAPAN TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD 65
5 MARKET OVERVIEW 66
5.1 INTRODUCTION 66
5.2 MARKET DYNAMICS 67
FIGURE 21 DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES FOR SMALL SATELLITE MARKET 67
5.2.1 DRIVERS 67
5.2.1.1 Growing demand for LEO-based small satellites 67
TABLE 3 KEY INFORMATION ON LEO AND MEO CONSTELLATIONS (OPERATIONAL) 68
TABLE 4 KEY INFORMATION ON LEO AND MEO CONSTELLATIONS (DEVELOPMENT) 68
5.2.1.2 Rising need for Earth observation imagery and analytics 68
5.2.1.3 Technological advancements in software-defined payloads for communication satellites 69
5.2.1.4 Increasing number of space exploration missions 69
5.2.1.5 Cost-effectiveness of small satellites compared to conventional satellites 69
FIGURE 22 NUMBER OF SMALL SATELLITES, BY OPERATOR TYPE, 2022 70
5.2.2 RESTRAINTS 70
5.2.2.1 Absence of unified regulations and government policies across nations 70
5.2.2.2 Lack of dedicated small satellite launch vehicles 71
5.2.3 OPPORTUNITIES 71
5.2.3.1 Use of software-defined technology for flexibility to alter space missions 71
5.2.3.2 Development of satellite network to provide internet access in areas without broadband connectivity 72
5.2.3.3 Increased government investments in space agencies 72
FIGURE 23 ORBITAL LAUNCHES, BY COUNTRY, 2022 73
5.2.3.4 Increased use of small satellites in various applications 73
5.2.4 CHALLENGES 74
5.2.4.1 Concerns over space debris 74
5.2.4.2 Complex propulsion systems 74
5.2.4.3 Telemetry, tracking, and command issues 75
5.2.4.4 Raising capital and funding for satellite manufacturing and launch 75
5.2.4.5 Qualitative limitation of small satellites 75
5.3 RECESSION IMPACT ANALYSIS 76
5.4 VALUE CHAIN ANALYSIS OF SMALL SATELLITE MARKET 76
FIGURE 24 VALUE CHAIN ANALYSIS 76
5.5 TRENDS/DISRUPTIONS IMPACTING CUSTOMER BUSINESS 78
5.5.1 REVENUE SHIFT AND NEW REVENUE POCKETS FOR SMALL SATELLITE SYSTEM MANUFACTURERS 78
FIGURE 25 REVENUE SHIFT CURVE: SMALL SATELLITE MARKET 78
5.6 SMALL SATELLITE MARKET ECOSYSTEM 78
5.6.1 PROMINENT COMPANIES 78
5.6.2 PRIVATE AND SMALL ENTERPRISES 78
5.6.3 ECOSYSTEM 79
FIGURE 26 MARKET ECOSYSTEM MAP: SMALL SATELLITE MARKET 79
TABLE 5 SMALL SATELLITE MARKET ECOSYSTEM 79
5.7 PORTER’S FIVE FORCES ANALYSIS 80
TABLE 6 SMALL SATELLITE: PORTER’S FIVE FORCE ANALYSIS 80
5.7.1 THREAT OF NEW ENTRANTS 81
5.7.2 THREAT OF SUBSTITUTES 81
5.7.3 BARGAINING POWER OF SUPPLIERS 81
5.7.4 BARGAINING POWER OF BUYERS 82
5.7.5 INTENSITY OF COMPETITIVE RIVALRY 82
5.8 PRICING ANALYSIS 82
5.8.1 AVERAGE PRICE ANALYSIS OF SMALL SATELLITES IN 2022 82
5.9 TARIFF AND REGULATORY LANDSCAPE 83
5.9.1 NORTH AMERICA 83
TABLE 7 LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER AGENCIES IN NORTH AMERICA 83
5.9.2 EUROPE 84
TABLE 8 LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER AGENCIES IN EUROPE 84
5.9.3 ASIA PACIFIC 85
TABLE 9 LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER AGENCIES IN ASIA PACIFIC 85
5.9.4 REST OF THE WORLD 85
TABLE 10 LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER AGENCIES IN REST OF THE WORLD 85
5.10 TRADE ANALYSIS 86
TABLE 11 SMALL SATELLITE MARKET: COUNTRY-WISE IMPORT, 2019–2021 (USD THOUSAND) 86
TABLE 12 SMALL SATELLITE MARKET: COUNTRY-WISE EXPORTS, 2019–2021 (USD THOUSAND) 86
5.11 PATENT ANALYSIS 87
FIGURE 27 LIST OF MAJOR PATENTS FOR SMALL SATELLITES 87
TABLE 13 LIST OF MAJOR PATENTS FOR SMALL SATELLITES 88
TABLE 14 OTHER INNOVATIONS AND PATENT REGISTRATIONS, 2020–2021 88
5.12 KEY STAKEHOLDERS AND BUYING CRITERIA 90
5.12.1 KEY STAKEHOLDERS ON BUYING PROCESS 90
FIGURE 28 INFLUENCE OF STAKEHOLDERS IN BUYING SMALL SATELLITES, BY END USE 90
TABLE 15 INFLUENCE OF STAKEHOLDERS ON BUYING SMALL SATELLITES, BY END USE (%) 90
5.12.2 BUYING CRITERIA 91
FIGURE 29 KEY BUYING CRITERIA FOR SMALL SATELLITES, BY TYPE 91
TABLE 16 KEY BUYING CRITERIA FOR SMALL SATELLITES, BY APPLICATION 91
5.13 KEY CONFERENCES AND EVENTS, 2022–23 92
TABLE 17 SMALL SATELLITES MARKET: DETAILED LIST OF CONFERENCES AND EVENTS 92
5.14 TECHNOLOGY ANALYSIS 92
5.14.1 KEY TECHNOLOGY 92
5.14.1.1 Development of CubeSat constellations to enhance communication 92
5.14.1.2 Miniaturization in space technology 92
5.14.2 SUPPORTING TECHNOLOGY 93
5.14.2.1 Hyperspectral and multispectral imaging 93
5.15 USE CASE ANALYSIS 93
5.15.1 USE CASE: CUBESATS FOR INTERPLANETARY MISSIONS 93
5.15.2 USE CASE: SMALL SATELLITES FOR IOT AND COMMUNICATIONS 94
5.15.3 USE CASE: SPACE-BASED GLOBAL WIRELESS MONITORING SYSTEMS 94
5.15.4 MEASUREMENTS OF MAGNETIC AND ELECTRIC FIELDS ON EARTH’S IONOSPHERE 94
5.15.5 USE CASE: REAL-TIME DATA FOR EMERGENCY SYSTEMS 95
5.15.6 USE CASE: SATELLITE RADIATION HARDNESS TEST 95
5.16 OPERATIONAL DATA 95
TABLE 18 SMALL SATELLITE LAUNCHES, BY APPLICATION, 2019–2028 95
6 INDUSTRY TRENDS 96
6.1 INTRODUCTION 96
6.2 SUPPLY CHAIN ANALYSIS 96
FIGURE 30 SUPPLY CHAIN ANALYSIS 97
6.3 TECHNOLOGY TRENDS 97
6.3.1 EVOLUTION OF NANOSATELLITES AND MICROSATELLITES 97
FIGURE 31 EVOLUTION: NANOSATELLITES AND MICROSATELLITES 98
6.3.2 DEVELOPMENT OF SMALL SATELLITE CONSTELLATIONS TO ENHANCE COMMUNICATION 98
6.3.3 3D PRINTING OF SATELLITE EQUIPMENT 98
6.3.4 USE OF SMALL SATELLITES TO PROVIDE ENHANCED SPACE IMAGERY 99
6.3.5 DEVELOPMENT OF DEDICATED LAUNCH VEHICLES FOR SMALL SATELLITES 99
TABLE 19 STATE-OF-THE-ART SMALL SATELLITE AND CUBESAT TECHNOLOGIES 100
6.3.6 DISTRIBUTED ELECTRIC POWER SYSTEM (EPS) IN SMALL SATELLITE APPLICATIONS 101
TABLE 20 DIFFERENCE BETWEEN DISTRIBUTED AND CENTRALIZED EPS ARCHITECTURE 101
6.3.7 ENERGY STORAGE (PRIMARY & SECONDARY BATTERIES) 101
TABLE 21 CUBESAT BATTERY TECHNOLOGIES 102
6.4 IMPACT OF MEGATRENDS 102
6.4.1 HYBRID BEAMFORMING METHODS 102
6.4.2 DEVELOPMENT OF NEW-GENERATION CUBESAT FOR LUNAR EXPLORATION 103
6.4.3 COGNITIVE RADIO (SDR-CR) TECHNOLOGY 103
6.4.4 SHIFT IN GLOBAL ECONOMIC POWER 103
7 SMALL SATELLITE MARKET, BY MASS 104
7.1 INTRODUCTION 105
FIGURE 32 CUBESAT SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 105
TABLE 22 SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 105
TABLE 23 SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 106
7.2 SMALL SATELLITE 106
TABLE 24 SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 106
TABLE 25 SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 106
7.3 MINISATELLITES (100–500 KG) 107
7.3.1 WIDELY USED FOR COMMUNICATION AND BROADBAND INTERNET 107
7.4 MICROSATELLITES (10–100 KG) 107
7.4.1 CAN FUNCTION AS EFFECTIVE TACTICAL COMMUNICATION DEVICES FOR MILITARY APPLICATIONS 107
7.5 NANOSATELLITES (1–10 KG) 107
7.5.1 USED FOR VARIOUS APPLICATIONS, SUCH AS EARTH OBSERVATION AND RECONNAISSANCE MISSIONS 107
7.6 OTHERS (PICOSATELLITES AND FEMTOSATELLITES) 108
7.7 CUBESAT 108
TABLE 26 CUBE SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 108
TABLE 27 CUBE SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 109
7.8 0.25–0.5U 109
7.8.1 0.25–0.5U CUBESATS DEPLOYED FOR INTERPLANETARY MISSIONS 109
7.9 1U 110
7.9.1 KEY FOCUS ON DEVELOPING 1U CUBESATS FOR COMMUNICATION 110
7.10 2U 110
7.10.1 2U CUBESATS USED FOR TESTING EMERGING TECHNOLOGIES 110
7.11 3U 110
7.11.1 3U CUBESATS USED FOR EARTH OBSERVATION AND TRAFFIC MONITORING 110
7.12 6U 110
7.12.1 INCREASING DEMAND FOR 6U CUBESATS FOR SPACE SCIENCE MISSIONS TO DRIVE SEGMENT 110
7.13 >12U 111
7.13.1 >12U CUBESATS USED IN DEEP SPACE MISSIONS AND RESEARCH 111
8 SMALL SATELLITE MARKET, BY SUBSYSTEM 112
8.1 INTRODUCTION 113
8.1.1 SUBSYSTEM: MARKET DRIVERS 113
FIGURE 33 PAYLOAD SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 113
TABLE 28 SMALL SATELLITE MARKET, BY SUBSYSTEM, 2019–2022 (USD MILLION) 113
TABLE 29 SMALL SATELLITE MARKET, BY SUBSYSTEM, 2023–2028 (USD MILLION) 114
8.2 SATELLITE BUS 114
TABLE 30 SATELLITE BUS MARKET, BY SUBTYPE, 2019–2022 (USD MILLION) 114
TABLE 31 SATELLITE BUS MARKET, BY SUBTYPE, 2023–2028 (USD MILLION) 115
8.2.1 ATTITUDE & ORBITAL CONTROL SYSTEM 115
8.2.1.1 Need for stability of payloads and pointing accuracy to drive segment 115
8.2.2 COMMAND & DATA HANDLING (C&DH) SYSTEM 115
8.2.2.1 C&DH system controls overall operations of small satellites 115
8.2.3 ELECTRICAL POWER SYSTEM (EPS) 116
8.2.3.1 Technological advancements in electrical power systems drive their demand 116
8.2.4 PROPULSION SYSTEM 116
TABLE 32 PROPULSION SYSTEM MARKET, BY TYPE, 2019–2022 (USD MILLION) 116
TABLE 33 PROPULSION SYSTEM MARKET, BY TYPE, 2023–2028 (USD MILLION) 117
8.2.4.1 Chemical propulsion 117
8.2.4.1.1 Technological innovations to drive demand for chemical propulsion 117
8.2.4.2 Electric propulsion 117
8.2.4.2.1 Improved performance of new-generation systems to drive market 117
8.2.4.3 Hybrid propulsion 118
8.2.4.3.1 Demand for low-cost launch vehicles to drive segment 118
8.2.5 TELEMETRY, TRACKING, & COMMAND (TT&C) 118
8.2.5.1 Need for effective communication between satellites and ground stations to fuel segment 118
8.2.6 STRUCTURE 118
8.2.6.1 Standardized structures enable proper placement of systems in satellites 118
8.2.7 THERMAL SYSTEM 119
8.2.7.1 Need for miniaturized thermal management systems to fuel market 119
8.3 PAYLOAD 119
TABLE 34 PAYLOAD SYSTEM MARKET, BY TYPE, 2019–2022 (USD MILLION) 119
TABLE 35 PAYLOAD SYSTEM MARKET, BY TYPE, 2023–2028 (USD MILLION) 119
8.3.1 TRADITIONAL PAYLOADS 120
TABLE 36 TRADITIONAL PAYLOADS MARKET, BY TYPE, 2019–2022 (USD MILLION) 120
TABLE 37 TRADITIONAL PAYLOADS MARKET, BY TYPE, 2023–2028 (USD MILLION) 120
8.3.1.1 Optical & infrared 120
8.3.1.1.1 Increased demand for earth observation and remote sensing applications to drive segment 120
8.3.1.2 Hyperspectral & multispectral 121
8.3.1.2.1 Increased need for applications like mapping & remote sensing to drive demand 121
8.3.1.3 Radar 121
8.3.1.3.1 Need for high-resolution remote sensing to drive demand 121
8.3.1.4 Communication payload/transponder 122
8.3.1.4.1 Increasing need for efficient communication for small satellites to drive demand 122
8.3.1.5 Others 122
8.3.2 SOFTWARE-DEFINED PAYLOADS 122
8.3.2.1 Use of software-defined technology for flexibility to alter space missions to drive segment 122
8.4 SOLAR PANEL 123
8.5 SATELLITE ANTENNA 123
8.5.1 WIRE ANTENNAS 123
8.5.1.1 Monopole 123
8.5.1.1.1 Monopole antennas provide shorter signals with wider coverage area 123
8.5.1.2 Dipole 124
8.5.1.2.1 Dipole antennas used for radio transmitting and receiving applications 124
8.5.2 HORN ANTENNAS 124
8.5.2.1 Horn antennas used for earth observation due to their wide range of frequency 124
8.5.3 ARRAY ANTENNAS 124
8.5.3.1 Advancements in solid-state technology to make phased array antennas more cost-effective 124
8.5.4 REFLECTOR ANTENNAS 124
8.5.4.1 Used as high-gain antennas in microwave relay 124
8.5.4.2 Parabolic reflectors 125
8.5.4.2.1 Parabolic reflectors used for point-to-point communication 125
8.5.4.3 Double reflectors 125
8.5.4.3.1 Double reflectors have better gain than other antennas 125
8.6 OTHERS 125
9 SMALL SATELLITE MARKET, BY APPLICATION 126
9.1 INTRODUCTION 127
9.1.1 APPLICATIONS: MARKET DRIVERS 127
FIGURE 34 COMMUNICATION SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 127
TABLE 38 SMALL SATELLITE MARKET, BY APPLICATION, 2019–2022 (USD MILLION) 128
TABLE 39 SMALL SATELLITE MARKET, BY APPLICATION, 2023–2028 (USD MILLION) 128
9.2 COMMUNICATION 128
9.2.1 DEVELOPMENT OF EFFICIENT MINIATURE COMMUNICATION SYSTEMS TO DRIVE MARKET 128
9.3 EARTH OBSERVATION 129
9.3.1 COMPACT NATURE OF SMALL SATELLITES LED TO EFFICIENT EARTH OBSERVATION AND REMOTE SENSING 129
9.4 EDUCATION 129
9.4.1 ADVANCEMENTS IN TECHNOLOGY AND MINIATURIZATION OF SUBCOMPONENTS TO FACILITATE USE OF SMALL SATELLITES FOR NEW SPACE SCIENCE MISSIONS 129
9.5 TECHNOLOGY 130
9.5.1 INCREASED INVESTMENTS IN SMALL SATELLITES TO DEVELOP BETTER NAVIGATION AND TRACKING TECHNOLOGIES TO DRIVE MARKET 130
9.6 OTHERS 130
9.6.1 INCREASED FOCUS ON SECURITY AND SPACE EXPLORATION & OBSERVATION TO DRIVE MARKET 130
10 SMALL SATELLITE MARKET, BY END USE 132
10.1 INTRODUCTION 133
10.1.1 END USE: MARKET DRIVERS 133
FIGURE 35 COMMERCIAL SEGMENT TO HOLD LARGEST MARKET SHARE 133
TABLE 40 SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 133
TABLE 41 SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 134
10.2 COMMERCIAL 134
TABLE 42 SMALL SATELLITE MARKET, BY COMMERCIAL END USER, 2019–2022 (USD MILLION) 134
TABLE 43 SMALL SATELLITE MARKET, BY COMMERCIAL END USER, 2023–2028 (USD MILLION) 135
10.2.1 SATELLITE OPERATORS/OWNERS 135
10.2.1.1 Extensive use of small satellites for commercialization and data transferability to drive market 135
10.2.2 MEDIA & ENTERTAINMENT 135
10.2.2.1 Increasing demand for on-demand and streaming information and entertainment to drive market 135
10.2.3 ENERGY INDUSTRY 135
10.2.3.1 Demand for monitoring structural integrity of nuclear power stations to drive market 135
10.2.4 SCIENTIFIC RESEARCH & DEVELOPMENT 136
10.2.4.1 Endless prospects in space research to create market opportunities 136
10.2.5 OTHERS 136
10.3 GOVERNMENT & DEFENSE 136
TABLE 44 SMALL SATELLITE MARKET, BY GOVERNMENT & DEFENSE END USER, 2019–2022 (USD MILLION) 137
TABLE 45 SMALL SATELLITE MARKET, BY GOVERNMENT & DEFENSE END USER, 2023–2028 (USD MILLION) 137
10.3.1 DEPARTMENT OF DEFENSE & INTELLIGENCE AGENCIES 137
10.3.1.1 Increasing demand for real-time data and imaging to trigger market growth 137
10.3.2 NATIONAL SPACE AGENCIES 138
10.3.2.1 Small satellites lead to efficient Earth observation and remote sensing 138
10.3.3 SEARCH AND RESCUE ENTITIES 138
10.3.3.1 Need for Earth observation for search & rescue operations to drive demand 138
10.3.4 ACADEMIC & RESEARCH INSTITUTIONS 138
10.3.4.1 Increasing government support to train students in small satellite development to drive demand 138
10.3.5 NATIONAL MAPPING & TOPOGRAPHIC AGENCIES 138
10.3.5.1 Increased investments in small satellites to improve GPS-based navigation to trigger demand 138
10.4 DUAL-USE 139
10.4.1 INCREASING LAUNCHES OF SATELLITES FOR BETTER CONNECTIVITY AND PROVISION OF HIGH-SPEED DATA TO DRIVE MARKET 139
11 SMALL SATELLITE MARKET, BY FREQUENCY 140
11.1 INTRODUCTION 141
11.1.1 FREQUENCY: MARKET DRIVERS 141
FIGURE 36 KU-BAND SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 141
TABLE 46 SMALL SATELLITE MARKET, BY FREQUENCY, 2019–2022 (USD MILLION) 141
TABLE 47 SMALL SATELLITE MARKET, BY FREQUENCY, 2023–2028 (USD MILLION) 142
11.2 L-BAND 142
11.2.1 EXTENSIVELY USED IN DATA COMMUNICATIONS AND TRAFFIC INFORMATION 142
11.3 S-BAND 142
11.3.1 LOW DRAG AND LIGHTWEIGHT S-BAND ANTENNAS PREFERRED FOR SPACE OPERATIONS 142
11.4 C-BAND 143
11.4.1 SMALL SATELLITES WITH C-BAND FREQUENCY USED FOR NAVIGATION PURPOSES 143
11.5 X-BAND 143
11.5.1 INCREASED USE OF X-BAND TO PROVIDE HIGH-THROUGHPUT COMMUNICATION FROM SPACECRAFT TO GROUND STATIONS TO DRIVE MARKET 143
11.6 KU-BAND 143
11.6.1 NEED FOR WIDER-RANGE DATA COMMUNICATION TO DRIVE DEMAND 143
11.7 KA-BAND 144
11.7.1 KA-BAND ANTENNAS USED FOR HIGH-BANDWIDTH COMMUNICATION 144
11.8 Q/V-BAND 144
11.8.1 Q/V BAND ANTENNAS REDUCE SIGNAL FADING AT HIGH-FREQUENCY BANDS 144
11.9 HF/VHF/UHF-BAND 144
11.9.1 HF/VHF/UHF BAND ANTENNAS EXTENSIVELY USED FOR CUBESAT COMMUNICATION 144
11.10 LASER/OPTICAL-BAND 144
11.10.1 LASER/OPTICAL BAND COMMUNICATION IN SPACE OPENS VIRTUALLY UNLIMITED CAPACITIES WITHOUT REGULATIONS 144
12 SMALL SATELLITE MARKET, BY ORBIT 145
12.1 INTRODUCTION 146
FIGURE 37 GEO SEGMENT TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD 146
TABLE 48 SMALL SATELLITE MARKET, BY ORBIT, 2019–2022 (USD MILLION) 147
TABLE 49 SMALL SATELLITE MARKET, BY ORBIT, 2023–2028 (USD MILLION) 147
12.2 LOW EARTH ORBIT (LEO) 147
12.2.1 INCREASED DEMAND FOR LEO CONSTELLATION SATELLITES DEVELOPED BY SPACEX TO DRIVE SEGMENT 147
12.3 MEDIUM EARTH ORBIT (MEO) 148
12.3.1 INCREASING DEMAND FOR SATELLITE SERVICES FOR TELECOMMUNICATIONS & MOBILE BROADBAND APPLICATIONS TO FUEL SEGMENT GROWTH 148
12.4 GEOSTATIONARY EARTH ORBIT (GEO) 148
12.4.1 GEO SATELLITES OPERATE AT HIGH ALTITUDES, AND PAYLOADS CARRIED BY THEM HAVE LONG LIFE EXPECTANCY 148
13 SMALL SATELLITE MARKET, BY REGION 149
13.1 INTRODUCTION 150
13.1.1 REGIONAL RECESSION IMPACT ANALYSIS 150
FIGURE 38 NORTH AMERICA ESTIMATED TO ACCOUNT FOR LARGEST MARKET SHARE IN 2023 154
TABLE 50 SMALL SATELLITE MARKET, BY REGION, 2019–2022 (USD MILLION) 154
TABLE 51 SMALL SATELLITE MARKET, BY REGION, 2023–2028 (USD MILLION) 154
13.2 NORTH AMERICA 155
13.2.1 PESTLE ANALYSIS: NORTH AMERICA 155
FIGURE 39 NORTH AMERICA: SMALL SATELLITE MARKET SNAPSHOT 156
TABLE 52 NORTH AMERICA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 156
TABLE 53 NORTH AMERICA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 157
TABLE 54 NORTH AMERICA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 157
TABLE 55 NORTH AMERICA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 157
TABLE 56 NORTH AMERICA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 157
TABLE 57 NORTH AMERICA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 158
TABLE 58 NORTH AMERICA: SMALL SATELLITE MARKET, BY COUNTRY, 2019–2022 (USD MILLION) 158
TABLE 59 NORTH AMERICA: SMALL SATELLITE MARKET, BY COUNTRY, 2023–2028 (USD MILLION) 158
13.2.2 US 158
13.2.2.1 Increasing use of small satellites in agriculture to drive market 158
TABLE 60 US: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 159
TABLE 61 US: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 159
TABLE 62 US: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 159
TABLE 63 US: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 159
TABLE 64 US: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 159
TABLE 65 US: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 160
13.2.3 CANADA 160
13.2.3.1 Government initiatives towards space exploration and earth observation to drive market 160
TABLE 66 CANADA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 160
TABLE 67 CANADA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 160
TABLE 68 CANADA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 161
TABLE 69 CANADA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 161
TABLE 70 CANADA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 161
TABLE 71 CANADA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 161
13.3 EUROPE 162
13.3.1 PESTLE ANALYSIS: EUROPE 162
FIGURE 40 EUROPE: SMALL SATELLITE MARKET SNAPSHOT 163
TABLE 72 EUROPE: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 163
TABLE 73 EUROPE: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 164
TABLE 74 EUROPE: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 164
TABLE 75 EUROPE: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 164
TABLE 76 EUROPE: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 164
TABLE 77 EUROPE: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 165
TABLE 78 EUROPE: SMALL SATELLITE MARKET, BY COUNTRY, 2019–2022 (USD MILLION) 165
TABLE 79 EUROPE: SMALL SATELLITE MARKET, BY COUNTRY, 2023–2028 (USD MILLION) 165
13.3.2 RUSSIA 166
13.3.2.1 Growing reliance on self-developed space systems to drive market 166
TABLE 80 RUSSIA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 166
TABLE 81 RUSSIA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 166
TABLE 82 RUSSIA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 166
TABLE 83 RUSSIA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 167
TABLE 84 RUSSIA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 167
TABLE 85 RUSSIA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 167
13.3.3 UK 167
13.3.3.1 Innovations in satellite technologies to drive market 167
TABLE 86 UK: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 168
TABLE 87 UK: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 168
TABLE 88 UK: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 168
TABLE 89 UK: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 168
TABLE 90 UK: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 168
TABLE 91 UK: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 169
13.3.4 GERMANY 169
13.3.4.1 Increasing demand for Earth observation and communication to drive market 169
TABLE 92 GERMANY: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 169
TABLE 93 GERMANY: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 169
TABLE 94 GERMANY: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 170
TABLE 95 GERMANY: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 170
TABLE 96 GERMANY: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 170
TABLE 97 GERMANY: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 170
13.3.5 FINLAND 171
13.3.5.1 Increasing partnerships among local companies to boost market 171
TABLE 98 FINLAND: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 171
TABLE 99 FINLAND: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 171
TABLE 100 FINLAND: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 171
TABLE 101 FINLAND: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 172
TABLE 102 FINLAND: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 172
TABLE 103 FINLAND: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 172
13.3.6 ITALY 172
13.3.6.1 Demand for Earth observation and science missions to drive market 172
TABLE 104 ITALY: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 173
TABLE 105 ITALY: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 173
TABLE 106 ITALY: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 173
TABLE 107 ITALY: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 173
TABLE 108 ITALY: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 174
TABLE 109 ITALY: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 174
13.3.7 REST OF EUROPE 174
TABLE 110 REST OF EUROPE: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 174
TABLE 111 REST OF EUROPE: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 175
TABLE 112 REST OF EUROPE: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 175
TABLE 113 REST OF EUROPE: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 175
TABLE 114 REST OF EUROPE: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 175
TABLE 115 REST OF EUROPE: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 176
13.4 ASIA PACIFIC 176
13.4.1 PESTLE ANALYSIS: ASIA PACIFIC 176
FIGURE 41 ASIA PACIFIC: SMALL SATELLITE SNAPSHOT 178
TABLE 116 ASIA PACIFIC: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 178
TABLE 117 ASIA PACIFIC: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 179
TABLE 118 ASIA PACIFIC: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 179
TABLE 119 ASIA PACIFIC: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 179
TABLE 120 ASIA PACIFIC: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 179
TABLE 121 ASIA PACIFIC: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 180
TABLE 122 ASIA PACIFIC: SMALL SATELLITE MARKET, BY COUNTRY, 2019–2022 (USD MILLION) 180
TABLE 123 ASIA PACIFIC: SMALL SATELLITE MARKET, BY COUNTRY, 2023–2028 (USD MILLION) 180
13.4.2 CHINA 181
13.4.2.1 Dependence on self-made space technology led to increased satellite launches in China 181
TABLE 124 CHINA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 181
TABLE 125 CHINA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 181
TABLE 126 CHINA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 181
TABLE 127 CHINA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 182
TABLE 128 CHINA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 182
TABLE 129 CHINA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 182
13.4.3 INDIA 182
13.4.3.1 12.4.4.1 Upcoming space initiatives to drive market 182
TABLE 130 INDIA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 183
TABLE 131 INDIA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 183
TABLE 132 INDIA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 183
TABLE 133 INDIA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 183
TABLE 134 INDIA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 184
TABLE 135 INDIA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 184
13.4.4 JAPAN 184
13.4.4.1 Involvement of private companies in government space programs to drive market 184
TABLE 136 JAPAN: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 184
TABLE 137 JAPAN: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 185
TABLE 138 JAPAN: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 185
TABLE 139 JAPAN: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 185
TABLE 140 JAPAN: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 185
TABLE 141 JAPAN: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 186
13.4.5 SOUTH KOREA 186
13.4.5.1 Increased government funding to provide significant opportunities for market growth 186
TABLE 142 SOUTH KOREA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 186
TABLE 143 SOUTH KOREA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 187
TABLE 144 SOUTH KOREA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 187
TABLE 145 SOUTH KOREA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 187
TABLE 146 SOUTH KOREA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 187
TABLE 147 SOUTH KOREA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 188
13.4.6 AUSTRALIA 188
13.4.6.1 Government support to new manufacturers for opening new facilities to drive market 188
TABLE 148 AUSTRALIA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 188
TABLE 149 AUSTRALIA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 189
TABLE 150 AUSTRALIA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 189
TABLE 151 AUSTRALIA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 189
TABLE 152 AUSTRALIA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 189
TABLE 153 AUSTRALIA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 190
13.4.7 REST OF ASIA PACIFIC 190
TABLE 154 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 190
TABLE 155 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 190
TABLE 156 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 191
TABLE 157 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 191
TABLE 158 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 191
TABLE 159 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 191

 

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Summary

The small satellite market is projected to grow from USD 3.2 Billion in 2022 to USD 7.0 Billion by 2028, at a CAGR of 16.8 % during the forecast period. The growth of this market can be attributed to the increasing need for secure satellite communications for military missions and commercial applications. Additionally technological advancements in small satellite systems, such as laser/optical band communications technologies are driving the market.

The CubeSat segment is projected to witness the highest CAGR during the forecast period.
Based on mass, the CubeSat segment of the small satellite market is projected to hold the highest growth rate during the forecast period. CubeSats are used for a variety of missions by governments, universities, and private businesses due to their low cost and fast turnaround time. The development of new technologies and improvements in launch systems also contributed to the growth of the CubeSat market.

The laser/optical band segment is projected to dominate the small satellite market by frequency
Based on Frequency, the laser/optical band segment is projected to dominate the market share during the forecast period. The laser/optical band enhance the communication capabilities. The most promising commercial applications can be found in the interconnection of satellites or high-altitude platforms to build high-performance optical backbone networks. Corporations like SpaceX, Facebook, Google, and a series of start-ups are currently working on various concepts based on laser communication technology.

North America is expected to account for the largest market share in 2023
The small satellite market industry has been studied in North America, Europe, Asia Pacific, Middle East and Africa and Latin America. North America accounted for the largest market share in 2022. The US leads the market in North America with a large number of companies and startups operating in the industry. The country is also home to some of the world's leading small satellite manufacturers and operators, such as SpaceX, Blue Origin, and Planet Labs.


The break-up of the profile of primary participants in the SMALL SATELLITE market:
• By Company Type: Tier 1 – 40%, Tier 2 – 30%, and Tier 3 – 30%
• By Designation: C Level – 30%, Director Level – 20%, Others-50%
• By Region: North America –35%, Europe – 20%, Asia Pacific – 30%, Middle East & Africa – 10%, and Latin America – 5%
Prominent companies include Sierra Nevada Corporation (US), L3Harris Technologies, Inc. (US), Lockheed Martin Corporation (US), Northrop Grumman Corporation (US), and Airbus Defence and Space (Germany) among others.

Research Coverage:

This research report categorizes the small satellite market by Application (Communication, Earth Observation, Education, Technology, Others), by Subsystem (Satellite bus, Payload, Solar Panel, Satellite Antenna, Others), by Orbit (LEO, GEO, MEO, Others), by Mass (Small Satellite, CubeSat), by End-use (commercial, government & defense), Frequency ( L-Band, S-Band, C-Band, X-Band, Ku-Band, Ka-Band, Q/V Band, HF/VHF/UHF- Band, & Laser/Optical) and region (North America, Europe, Asia Pacific, the Middle East & Africa, and Latin America). The scope of the report covers detailed information regarding the major factors, such as drivers, restraints, challenges, and opportunities, influencing the growth of the small satellite market. A detailed analysis of the key industry players has been done to provide insights into their business overview, solutions, and services; key strategies; Contracts, partnerships, agreements. new product & service launches, mergers and acquisitions, and recent developments associated with the small satellite market. Competitive analysis of upcoming startups in the small satellite market ecosystem is covered in this report.
Reasons to buy this report:
The report will help the market leaders/new entrants in this market with information on the closest approximations of the revenue numbers for the overall small satellite market and the subsegments. This report will help stakeholders understand the competitive landscape and gain more insights to position their businesses better and to plan suitable go-to-market strategies. The report also helps stakeholders understand the pulse of the market and provides them with information on key market drivers, restraints, challenges, and opportunities.

The report provides insights on the following pointers:
• Market Penetration: Comprehensive information on small satellite offered by the top players in the market

• Product Development/Innovation: Detailed insights on upcoming technologies, research & development activities, and new product & service launches in the small satellite market

• Market Development: Comprehensive information about lucrative markets – the report analyses the small satellite market across varied regions

• Market Diversification: Exhaustive information about new products & services, untapped geographies, recent developments, and investments in the small satellite market

• Competitive Assessment: In-depth assessment of market shares, growth strategies and service offerings of leading players in the small satellite market



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Table of Contents

1 INTRODUCTION 41
1.1 STUDY OBJECTIVES 41
1.2 MARKET DEFINITION 41
1.3 INCLUSIONS AND EXCLUSIONS 42
1.3.1 MARKETS COVERED 42
FIGURE 1 SMALL SATELLITE MARKET SEGMENTATION 42
1.3.2 REGIONAL SCOPE 43
1.3.3 YEARS CONSIDERED 43
1.4 CURRENCY AND PRICING 44
TABLE 1 USD EXCHANGE RATES 44
1.5 LIMITATIONS 44
1.6 STAKEHOLDERS 45
1.7 SUMMARY OF CHANGES 45
2 RESEARCH METHODOLOGY 46
2.1 RESEARCH DATA 46
FIGURE 2 RESEARCH PROCESS FLOW 46
FIGURE 3 RESEARCH DESIGN 47
2.1.1 SECONDARY DATA 47
2.1.1.1 Secondary sources 48
2.1.2 PRIMARY DATA 48
2.1.2.1 Key data from primary sources 49
2.1.2.2 Key data from primary sources 49
2.1.2.3 Key primary sources 50
2.1.3 BREAKDOWN OF PRIMARIES 50
FIGURE 4 BREAKDOWN OF PRIMARY INTERVIEWS: BY COMPANY TYPE, DESIGNATION, AND REGION 50
2.2 FACTOR ANALYSIS 51
2.2.1 INTRODUCTION 51
2.2.2 DEMAND-SIDE INDICATORS 51
2.2.3 SUPPLY-SIDE INDICATORS 51
2.2.4 SEGMENTS AND SUBSEGMENTS 52
2.3 RESEARCH APPROACH AND METHODOLOGY 53
2.3.1 BOTTOM-UP APPROACH 53
2.3.1.1 Market size estimation & methodology 53
FIGURE 5 MARKET SIZE ESTIMATION METHODOLOGY: BOTTOM-UP APPROACH 54
2.3.2 TOP-DOWN APPROACH 54
FIGURE 6 MARKET SIZE ESTIMATION METHODOLOGY: TOP-DOWN APPROACH 54
2.4 DATA TRIANGULATION 55
FIGURE 7 DATA TRIANGULATION 55
2.5 RECESSION IMPACT ANALYSIS 56
2.6 RESEARCH ASSUMPTIONS 56
TABLE 2 PARAMETRIC ASSUMPTIONS MADE FOR MARKET FORECAST 56
2.7 LIMITATIONS 56
2.8 RISK ANALYSIS 56
3 EXECUTIVE SUMMARY 57
FIGURE 8 MINISATELLITES SEGMENT TO LEAD MARKET FROM 2023 TO 2028 58
FIGURE 9 COMMERCIAL SEGMENT PROJECTED TO DOMINATE MARKET DURING FORECAST PERIOD 58
FIGURE 10 EARTH OBSERVATION SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 59
FIGURE 11 LOW EARTH ORBIT SEGMENT TO GROW AT HIGHEST RATE DURING FORECAST PERIOD 59
FIGURE 12 LASER/OPTICAL SEGMENT TO GROW AT HIGHEST RATE DURING FORECAST PERIOD 60
FIGURE 13 NORTH AMERICA ESTIMATED TO ACCOUNT FOR LARGEST MARKET SHARE IN 2023 60
4 PREMIUM INSIGHTS 62
4.1 ATTRACTIVE GROWTH OPPORTUNITIES FOR PLAYERS IN SMALL SATELLITE MARKET 62
FIGURE 14 INCREASING USE OF SMALL SATELLITES FOR TRACKING, MONITORING, AND SURVEILLANCE TO DRIVE MARKET 62
4.2 SMALL SATELLITE MARKET, BY SUBSYSTEM 62
FIGURE 15 SATELLITE BUS SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 62
4.3 SMALL SATELLITE BUS MARKET, BY SUBTYPE 63
FIGURE 16 ATTITUDE & ORBITAL CONTROL SYSTEM SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 63
4.4 SMALL SATELLITE PROPULSION MARKET, BY TYPE 63
FIGURE 17 CHEMICAL PROPULSION SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 63
4.5 SMALL SATELLITE PAYLOAD MARKET, BY PAYLOAD TYPE 64
FIGURE 18 TRADITIONAL PAYLOAD SEGMENT TO ACCOUNT FOR LARGER MARKET SHARE THROUGHOUT FORECAST PERIOD 64
4.6 SMALL SATELLITE PAYLOAD MARKET, BY TRADITIONAL PAYLOAD TYPE 64
FIGURE 19 OPTICAL & INFRARED SEGMENT PROJECTED TO LEAD MARKET DURING FORECAST PERIOD 64
4.7 SMALL SATELLITE MARKET, BY COUNTRY 65
FIGURE 20 SMALL SATELLITE MARKET IN JAPAN TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD 65
5 MARKET OVERVIEW 66
5.1 INTRODUCTION 66
5.2 MARKET DYNAMICS 67
FIGURE 21 DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES FOR SMALL SATELLITE MARKET 67
5.2.1 DRIVERS 67
5.2.1.1 Growing demand for LEO-based small satellites 67
TABLE 3 KEY INFORMATION ON LEO AND MEO CONSTELLATIONS (OPERATIONAL) 68
TABLE 4 KEY INFORMATION ON LEO AND MEO CONSTELLATIONS (DEVELOPMENT) 68
5.2.1.2 Rising need for Earth observation imagery and analytics 68
5.2.1.3 Technological advancements in software-defined payloads for communication satellites 69
5.2.1.4 Increasing number of space exploration missions 69
5.2.1.5 Cost-effectiveness of small satellites compared to conventional satellites 69
FIGURE 22 NUMBER OF SMALL SATELLITES, BY OPERATOR TYPE, 2022 70
5.2.2 RESTRAINTS 70
5.2.2.1 Absence of unified regulations and government policies across nations 70
5.2.2.2 Lack of dedicated small satellite launch vehicles 71
5.2.3 OPPORTUNITIES 71
5.2.3.1 Use of software-defined technology for flexibility to alter space missions 71
5.2.3.2 Development of satellite network to provide internet access in areas without broadband connectivity 72
5.2.3.3 Increased government investments in space agencies 72
FIGURE 23 ORBITAL LAUNCHES, BY COUNTRY, 2022 73
5.2.3.4 Increased use of small satellites in various applications 73
5.2.4 CHALLENGES 74
5.2.4.1 Concerns over space debris 74
5.2.4.2 Complex propulsion systems 74
5.2.4.3 Telemetry, tracking, and command issues 75
5.2.4.4 Raising capital and funding for satellite manufacturing and launch 75
5.2.4.5 Qualitative limitation of small satellites 75
5.3 RECESSION IMPACT ANALYSIS 76
5.4 VALUE CHAIN ANALYSIS OF SMALL SATELLITE MARKET 76
FIGURE 24 VALUE CHAIN ANALYSIS 76
5.5 TRENDS/DISRUPTIONS IMPACTING CUSTOMER BUSINESS 78
5.5.1 REVENUE SHIFT AND NEW REVENUE POCKETS FOR SMALL SATELLITE SYSTEM MANUFACTURERS 78
FIGURE 25 REVENUE SHIFT CURVE: SMALL SATELLITE MARKET 78
5.6 SMALL SATELLITE MARKET ECOSYSTEM 78
5.6.1 PROMINENT COMPANIES 78
5.6.2 PRIVATE AND SMALL ENTERPRISES 78
5.6.3 ECOSYSTEM 79
FIGURE 26 MARKET ECOSYSTEM MAP: SMALL SATELLITE MARKET 79
TABLE 5 SMALL SATELLITE MARKET ECOSYSTEM 79
5.7 PORTER’S FIVE FORCES ANALYSIS 80
TABLE 6 SMALL SATELLITE: PORTER’S FIVE FORCE ANALYSIS 80
5.7.1 THREAT OF NEW ENTRANTS 81
5.7.2 THREAT OF SUBSTITUTES 81
5.7.3 BARGAINING POWER OF SUPPLIERS 81
5.7.4 BARGAINING POWER OF BUYERS 82
5.7.5 INTENSITY OF COMPETITIVE RIVALRY 82
5.8 PRICING ANALYSIS 82
5.8.1 AVERAGE PRICE ANALYSIS OF SMALL SATELLITES IN 2022 82
5.9 TARIFF AND REGULATORY LANDSCAPE 83
5.9.1 NORTH AMERICA 83
TABLE 7 LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER AGENCIES IN NORTH AMERICA 83
5.9.2 EUROPE 84
TABLE 8 LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER AGENCIES IN EUROPE 84
5.9.3 ASIA PACIFIC 85
TABLE 9 LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER AGENCIES IN ASIA PACIFIC 85
5.9.4 REST OF THE WORLD 85
TABLE 10 LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER AGENCIES IN REST OF THE WORLD 85
5.10 TRADE ANALYSIS 86
TABLE 11 SMALL SATELLITE MARKET: COUNTRY-WISE IMPORT, 2019–2021 (USD THOUSAND) 86
TABLE 12 SMALL SATELLITE MARKET: COUNTRY-WISE EXPORTS, 2019–2021 (USD THOUSAND) 86
5.11 PATENT ANALYSIS 87
FIGURE 27 LIST OF MAJOR PATENTS FOR SMALL SATELLITES 87
TABLE 13 LIST OF MAJOR PATENTS FOR SMALL SATELLITES 88
TABLE 14 OTHER INNOVATIONS AND PATENT REGISTRATIONS, 2020–2021 88
5.12 KEY STAKEHOLDERS AND BUYING CRITERIA 90
5.12.1 KEY STAKEHOLDERS ON BUYING PROCESS 90
FIGURE 28 INFLUENCE OF STAKEHOLDERS IN BUYING SMALL SATELLITES, BY END USE 90
TABLE 15 INFLUENCE OF STAKEHOLDERS ON BUYING SMALL SATELLITES, BY END USE (%) 90
5.12.2 BUYING CRITERIA 91
FIGURE 29 KEY BUYING CRITERIA FOR SMALL SATELLITES, BY TYPE 91
TABLE 16 KEY BUYING CRITERIA FOR SMALL SATELLITES, BY APPLICATION 91
5.13 KEY CONFERENCES AND EVENTS, 2022–23 92
TABLE 17 SMALL SATELLITES MARKET: DETAILED LIST OF CONFERENCES AND EVENTS 92
5.14 TECHNOLOGY ANALYSIS 92
5.14.1 KEY TECHNOLOGY 92
5.14.1.1 Development of CubeSat constellations to enhance communication 92
5.14.1.2 Miniaturization in space technology 92
5.14.2 SUPPORTING TECHNOLOGY 93
5.14.2.1 Hyperspectral and multispectral imaging 93
5.15 USE CASE ANALYSIS 93
5.15.1 USE CASE: CUBESATS FOR INTERPLANETARY MISSIONS 93
5.15.2 USE CASE: SMALL SATELLITES FOR IOT AND COMMUNICATIONS 94
5.15.3 USE CASE: SPACE-BASED GLOBAL WIRELESS MONITORING SYSTEMS 94
5.15.4 MEASUREMENTS OF MAGNETIC AND ELECTRIC FIELDS ON EARTH’S IONOSPHERE 94
5.15.5 USE CASE: REAL-TIME DATA FOR EMERGENCY SYSTEMS 95
5.15.6 USE CASE: SATELLITE RADIATION HARDNESS TEST 95
5.16 OPERATIONAL DATA 95
TABLE 18 SMALL SATELLITE LAUNCHES, BY APPLICATION, 2019–2028 95
6 INDUSTRY TRENDS 96
6.1 INTRODUCTION 96
6.2 SUPPLY CHAIN ANALYSIS 96
FIGURE 30 SUPPLY CHAIN ANALYSIS 97
6.3 TECHNOLOGY TRENDS 97
6.3.1 EVOLUTION OF NANOSATELLITES AND MICROSATELLITES 97
FIGURE 31 EVOLUTION: NANOSATELLITES AND MICROSATELLITES 98
6.3.2 DEVELOPMENT OF SMALL SATELLITE CONSTELLATIONS TO ENHANCE COMMUNICATION 98
6.3.3 3D PRINTING OF SATELLITE EQUIPMENT 98
6.3.4 USE OF SMALL SATELLITES TO PROVIDE ENHANCED SPACE IMAGERY 99
6.3.5 DEVELOPMENT OF DEDICATED LAUNCH VEHICLES FOR SMALL SATELLITES 99
TABLE 19 STATE-OF-THE-ART SMALL SATELLITE AND CUBESAT TECHNOLOGIES 100
6.3.6 DISTRIBUTED ELECTRIC POWER SYSTEM (EPS) IN SMALL SATELLITE APPLICATIONS 101
TABLE 20 DIFFERENCE BETWEEN DISTRIBUTED AND CENTRALIZED EPS ARCHITECTURE 101
6.3.7 ENERGY STORAGE (PRIMARY & SECONDARY BATTERIES) 101
TABLE 21 CUBESAT BATTERY TECHNOLOGIES 102
6.4 IMPACT OF MEGATRENDS 102
6.4.1 HYBRID BEAMFORMING METHODS 102
6.4.2 DEVELOPMENT OF NEW-GENERATION CUBESAT FOR LUNAR EXPLORATION 103
6.4.3 COGNITIVE RADIO (SDR-CR) TECHNOLOGY 103
6.4.4 SHIFT IN GLOBAL ECONOMIC POWER 103
7 SMALL SATELLITE MARKET, BY MASS 104
7.1 INTRODUCTION 105
FIGURE 32 CUBESAT SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 105
TABLE 22 SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 105
TABLE 23 SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 106
7.2 SMALL SATELLITE 106
TABLE 24 SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 106
TABLE 25 SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 106
7.3 MINISATELLITES (100–500 KG) 107
7.3.1 WIDELY USED FOR COMMUNICATION AND BROADBAND INTERNET 107
7.4 MICROSATELLITES (10–100 KG) 107
7.4.1 CAN FUNCTION AS EFFECTIVE TACTICAL COMMUNICATION DEVICES FOR MILITARY APPLICATIONS 107
7.5 NANOSATELLITES (1–10 KG) 107
7.5.1 USED FOR VARIOUS APPLICATIONS, SUCH AS EARTH OBSERVATION AND RECONNAISSANCE MISSIONS 107
7.6 OTHERS (PICOSATELLITES AND FEMTOSATELLITES) 108
7.7 CUBESAT 108
TABLE 26 CUBE SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 108
TABLE 27 CUBE SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 109
7.8 0.25–0.5U 109
7.8.1 0.25–0.5U CUBESATS DEPLOYED FOR INTERPLANETARY MISSIONS 109
7.9 1U 110
7.9.1 KEY FOCUS ON DEVELOPING 1U CUBESATS FOR COMMUNICATION 110
7.10 2U 110
7.10.1 2U CUBESATS USED FOR TESTING EMERGING TECHNOLOGIES 110
7.11 3U 110
7.11.1 3U CUBESATS USED FOR EARTH OBSERVATION AND TRAFFIC MONITORING 110
7.12 6U 110
7.12.1 INCREASING DEMAND FOR 6U CUBESATS FOR SPACE SCIENCE MISSIONS TO DRIVE SEGMENT 110
7.13 >12U 111
7.13.1 >12U CUBESATS USED IN DEEP SPACE MISSIONS AND RESEARCH 111
8 SMALL SATELLITE MARKET, BY SUBSYSTEM 112
8.1 INTRODUCTION 113
8.1.1 SUBSYSTEM: MARKET DRIVERS 113
FIGURE 33 PAYLOAD SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 113
TABLE 28 SMALL SATELLITE MARKET, BY SUBSYSTEM, 2019–2022 (USD MILLION) 113
TABLE 29 SMALL SATELLITE MARKET, BY SUBSYSTEM, 2023–2028 (USD MILLION) 114
8.2 SATELLITE BUS 114
TABLE 30 SATELLITE BUS MARKET, BY SUBTYPE, 2019–2022 (USD MILLION) 114
TABLE 31 SATELLITE BUS MARKET, BY SUBTYPE, 2023–2028 (USD MILLION) 115
8.2.1 ATTITUDE & ORBITAL CONTROL SYSTEM 115
8.2.1.1 Need for stability of payloads and pointing accuracy to drive segment 115
8.2.2 COMMAND & DATA HANDLING (C&DH) SYSTEM 115
8.2.2.1 C&DH system controls overall operations of small satellites 115
8.2.3 ELECTRICAL POWER SYSTEM (EPS) 116
8.2.3.1 Technological advancements in electrical power systems drive their demand 116
8.2.4 PROPULSION SYSTEM 116
TABLE 32 PROPULSION SYSTEM MARKET, BY TYPE, 2019–2022 (USD MILLION) 116
TABLE 33 PROPULSION SYSTEM MARKET, BY TYPE, 2023–2028 (USD MILLION) 117
8.2.4.1 Chemical propulsion 117
8.2.4.1.1 Technological innovations to drive demand for chemical propulsion 117
8.2.4.2 Electric propulsion 117
8.2.4.2.1 Improved performance of new-generation systems to drive market 117
8.2.4.3 Hybrid propulsion 118
8.2.4.3.1 Demand for low-cost launch vehicles to drive segment 118
8.2.5 TELEMETRY, TRACKING, & COMMAND (TT&C) 118
8.2.5.1 Need for effective communication between satellites and ground stations to fuel segment 118
8.2.6 STRUCTURE 118
8.2.6.1 Standardized structures enable proper placement of systems in satellites 118
8.2.7 THERMAL SYSTEM 119
8.2.7.1 Need for miniaturized thermal management systems to fuel market 119
8.3 PAYLOAD 119
TABLE 34 PAYLOAD SYSTEM MARKET, BY TYPE, 2019–2022 (USD MILLION) 119
TABLE 35 PAYLOAD SYSTEM MARKET, BY TYPE, 2023–2028 (USD MILLION) 119
8.3.1 TRADITIONAL PAYLOADS 120
TABLE 36 TRADITIONAL PAYLOADS MARKET, BY TYPE, 2019–2022 (USD MILLION) 120
TABLE 37 TRADITIONAL PAYLOADS MARKET, BY TYPE, 2023–2028 (USD MILLION) 120
8.3.1.1 Optical & infrared 120
8.3.1.1.1 Increased demand for earth observation and remote sensing applications to drive segment 120
8.3.1.2 Hyperspectral & multispectral 121
8.3.1.2.1 Increased need for applications like mapping & remote sensing to drive demand 121
8.3.1.3 Radar 121
8.3.1.3.1 Need for high-resolution remote sensing to drive demand 121
8.3.1.4 Communication payload/transponder 122
8.3.1.4.1 Increasing need for efficient communication for small satellites to drive demand 122
8.3.1.5 Others 122
8.3.2 SOFTWARE-DEFINED PAYLOADS 122
8.3.2.1 Use of software-defined technology for flexibility to alter space missions to drive segment 122
8.4 SOLAR PANEL 123
8.5 SATELLITE ANTENNA 123
8.5.1 WIRE ANTENNAS 123
8.5.1.1 Monopole 123
8.5.1.1.1 Monopole antennas provide shorter signals with wider coverage area 123
8.5.1.2 Dipole 124
8.5.1.2.1 Dipole antennas used for radio transmitting and receiving applications 124
8.5.2 HORN ANTENNAS 124
8.5.2.1 Horn antennas used for earth observation due to their wide range of frequency 124
8.5.3 ARRAY ANTENNAS 124
8.5.3.1 Advancements in solid-state technology to make phased array antennas more cost-effective 124
8.5.4 REFLECTOR ANTENNAS 124
8.5.4.1 Used as high-gain antennas in microwave relay 124
8.5.4.2 Parabolic reflectors 125
8.5.4.2.1 Parabolic reflectors used for point-to-point communication 125
8.5.4.3 Double reflectors 125
8.5.4.3.1 Double reflectors have better gain than other antennas 125
8.6 OTHERS 125
9 SMALL SATELLITE MARKET, BY APPLICATION 126
9.1 INTRODUCTION 127
9.1.1 APPLICATIONS: MARKET DRIVERS 127
FIGURE 34 COMMUNICATION SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 127
TABLE 38 SMALL SATELLITE MARKET, BY APPLICATION, 2019–2022 (USD MILLION) 128
TABLE 39 SMALL SATELLITE MARKET, BY APPLICATION, 2023–2028 (USD MILLION) 128
9.2 COMMUNICATION 128
9.2.1 DEVELOPMENT OF EFFICIENT MINIATURE COMMUNICATION SYSTEMS TO DRIVE MARKET 128
9.3 EARTH OBSERVATION 129
9.3.1 COMPACT NATURE OF SMALL SATELLITES LED TO EFFICIENT EARTH OBSERVATION AND REMOTE SENSING 129
9.4 EDUCATION 129
9.4.1 ADVANCEMENTS IN TECHNOLOGY AND MINIATURIZATION OF SUBCOMPONENTS TO FACILITATE USE OF SMALL SATELLITES FOR NEW SPACE SCIENCE MISSIONS 129
9.5 TECHNOLOGY 130
9.5.1 INCREASED INVESTMENTS IN SMALL SATELLITES TO DEVELOP BETTER NAVIGATION AND TRACKING TECHNOLOGIES TO DRIVE MARKET 130
9.6 OTHERS 130
9.6.1 INCREASED FOCUS ON SECURITY AND SPACE EXPLORATION & OBSERVATION TO DRIVE MARKET 130
10 SMALL SATELLITE MARKET, BY END USE 132
10.1 INTRODUCTION 133
10.1.1 END USE: MARKET DRIVERS 133
FIGURE 35 COMMERCIAL SEGMENT TO HOLD LARGEST MARKET SHARE 133
TABLE 40 SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 133
TABLE 41 SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 134
10.2 COMMERCIAL 134
TABLE 42 SMALL SATELLITE MARKET, BY COMMERCIAL END USER, 2019–2022 (USD MILLION) 134
TABLE 43 SMALL SATELLITE MARKET, BY COMMERCIAL END USER, 2023–2028 (USD MILLION) 135
10.2.1 SATELLITE OPERATORS/OWNERS 135
10.2.1.1 Extensive use of small satellites for commercialization and data transferability to drive market 135
10.2.2 MEDIA & ENTERTAINMENT 135
10.2.2.1 Increasing demand for on-demand and streaming information and entertainment to drive market 135
10.2.3 ENERGY INDUSTRY 135
10.2.3.1 Demand for monitoring structural integrity of nuclear power stations to drive market 135
10.2.4 SCIENTIFIC RESEARCH & DEVELOPMENT 136
10.2.4.1 Endless prospects in space research to create market opportunities 136
10.2.5 OTHERS 136
10.3 GOVERNMENT & DEFENSE 136
TABLE 44 SMALL SATELLITE MARKET, BY GOVERNMENT & DEFENSE END USER, 2019–2022 (USD MILLION) 137
TABLE 45 SMALL SATELLITE MARKET, BY GOVERNMENT & DEFENSE END USER, 2023–2028 (USD MILLION) 137
10.3.1 DEPARTMENT OF DEFENSE & INTELLIGENCE AGENCIES 137
10.3.1.1 Increasing demand for real-time data and imaging to trigger market growth 137
10.3.2 NATIONAL SPACE AGENCIES 138
10.3.2.1 Small satellites lead to efficient Earth observation and remote sensing 138
10.3.3 SEARCH AND RESCUE ENTITIES 138
10.3.3.1 Need for Earth observation for search & rescue operations to drive demand 138
10.3.4 ACADEMIC & RESEARCH INSTITUTIONS 138
10.3.4.1 Increasing government support to train students in small satellite development to drive demand 138
10.3.5 NATIONAL MAPPING & TOPOGRAPHIC AGENCIES 138
10.3.5.1 Increased investments in small satellites to improve GPS-based navigation to trigger demand 138
10.4 DUAL-USE 139
10.4.1 INCREASING LAUNCHES OF SATELLITES FOR BETTER CONNECTIVITY AND PROVISION OF HIGH-SPEED DATA TO DRIVE MARKET 139
11 SMALL SATELLITE MARKET, BY FREQUENCY 140
11.1 INTRODUCTION 141
11.1.1 FREQUENCY: MARKET DRIVERS 141
FIGURE 36 KU-BAND SEGMENT TO LEAD MARKET DURING FORECAST PERIOD 141
TABLE 46 SMALL SATELLITE MARKET, BY FREQUENCY, 2019–2022 (USD MILLION) 141
TABLE 47 SMALL SATELLITE MARKET, BY FREQUENCY, 2023–2028 (USD MILLION) 142
11.2 L-BAND 142
11.2.1 EXTENSIVELY USED IN DATA COMMUNICATIONS AND TRAFFIC INFORMATION 142
11.3 S-BAND 142
11.3.1 LOW DRAG AND LIGHTWEIGHT S-BAND ANTENNAS PREFERRED FOR SPACE OPERATIONS 142
11.4 C-BAND 143
11.4.1 SMALL SATELLITES WITH C-BAND FREQUENCY USED FOR NAVIGATION PURPOSES 143
11.5 X-BAND 143
11.5.1 INCREASED USE OF X-BAND TO PROVIDE HIGH-THROUGHPUT COMMUNICATION FROM SPACECRAFT TO GROUND STATIONS TO DRIVE MARKET 143
11.6 KU-BAND 143
11.6.1 NEED FOR WIDER-RANGE DATA COMMUNICATION TO DRIVE DEMAND 143
11.7 KA-BAND 144
11.7.1 KA-BAND ANTENNAS USED FOR HIGH-BANDWIDTH COMMUNICATION 144
11.8 Q/V-BAND 144
11.8.1 Q/V BAND ANTENNAS REDUCE SIGNAL FADING AT HIGH-FREQUENCY BANDS 144
11.9 HF/VHF/UHF-BAND 144
11.9.1 HF/VHF/UHF BAND ANTENNAS EXTENSIVELY USED FOR CUBESAT COMMUNICATION 144
11.10 LASER/OPTICAL-BAND 144
11.10.1 LASER/OPTICAL BAND COMMUNICATION IN SPACE OPENS VIRTUALLY UNLIMITED CAPACITIES WITHOUT REGULATIONS 144
12 SMALL SATELLITE MARKET, BY ORBIT 145
12.1 INTRODUCTION 146
FIGURE 37 GEO SEGMENT TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD 146
TABLE 48 SMALL SATELLITE MARKET, BY ORBIT, 2019–2022 (USD MILLION) 147
TABLE 49 SMALL SATELLITE MARKET, BY ORBIT, 2023–2028 (USD MILLION) 147
12.2 LOW EARTH ORBIT (LEO) 147
12.2.1 INCREASED DEMAND FOR LEO CONSTELLATION SATELLITES DEVELOPED BY SPACEX TO DRIVE SEGMENT 147
12.3 MEDIUM EARTH ORBIT (MEO) 148
12.3.1 INCREASING DEMAND FOR SATELLITE SERVICES FOR TELECOMMUNICATIONS & MOBILE BROADBAND APPLICATIONS TO FUEL SEGMENT GROWTH 148
12.4 GEOSTATIONARY EARTH ORBIT (GEO) 148
12.4.1 GEO SATELLITES OPERATE AT HIGH ALTITUDES, AND PAYLOADS CARRIED BY THEM HAVE LONG LIFE EXPECTANCY 148
13 SMALL SATELLITE MARKET, BY REGION 149
13.1 INTRODUCTION 150
13.1.1 REGIONAL RECESSION IMPACT ANALYSIS 150
FIGURE 38 NORTH AMERICA ESTIMATED TO ACCOUNT FOR LARGEST MARKET SHARE IN 2023 154
TABLE 50 SMALL SATELLITE MARKET, BY REGION, 2019–2022 (USD MILLION) 154
TABLE 51 SMALL SATELLITE MARKET, BY REGION, 2023–2028 (USD MILLION) 154
13.2 NORTH AMERICA 155
13.2.1 PESTLE ANALYSIS: NORTH AMERICA 155
FIGURE 39 NORTH AMERICA: SMALL SATELLITE MARKET SNAPSHOT 156
TABLE 52 NORTH AMERICA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 156
TABLE 53 NORTH AMERICA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 157
TABLE 54 NORTH AMERICA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 157
TABLE 55 NORTH AMERICA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 157
TABLE 56 NORTH AMERICA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 157
TABLE 57 NORTH AMERICA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 158
TABLE 58 NORTH AMERICA: SMALL SATELLITE MARKET, BY COUNTRY, 2019–2022 (USD MILLION) 158
TABLE 59 NORTH AMERICA: SMALL SATELLITE MARKET, BY COUNTRY, 2023–2028 (USD MILLION) 158
13.2.2 US 158
13.2.2.1 Increasing use of small satellites in agriculture to drive market 158
TABLE 60 US: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 159
TABLE 61 US: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 159
TABLE 62 US: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 159
TABLE 63 US: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 159
TABLE 64 US: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 159
TABLE 65 US: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 160
13.2.3 CANADA 160
13.2.3.1 Government initiatives towards space exploration and earth observation to drive market 160
TABLE 66 CANADA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 160
TABLE 67 CANADA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 160
TABLE 68 CANADA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 161
TABLE 69 CANADA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 161
TABLE 70 CANADA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 161
TABLE 71 CANADA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 161
13.3 EUROPE 162
13.3.1 PESTLE ANALYSIS: EUROPE 162
FIGURE 40 EUROPE: SMALL SATELLITE MARKET SNAPSHOT 163
TABLE 72 EUROPE: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 163
TABLE 73 EUROPE: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 164
TABLE 74 EUROPE: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 164
TABLE 75 EUROPE: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 164
TABLE 76 EUROPE: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 164
TABLE 77 EUROPE: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 165
TABLE 78 EUROPE: SMALL SATELLITE MARKET, BY COUNTRY, 2019–2022 (USD MILLION) 165
TABLE 79 EUROPE: SMALL SATELLITE MARKET, BY COUNTRY, 2023–2028 (USD MILLION) 165
13.3.2 RUSSIA 166
13.3.2.1 Growing reliance on self-developed space systems to drive market 166
TABLE 80 RUSSIA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 166
TABLE 81 RUSSIA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 166
TABLE 82 RUSSIA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 166
TABLE 83 RUSSIA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 167
TABLE 84 RUSSIA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 167
TABLE 85 RUSSIA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 167
13.3.3 UK 167
13.3.3.1 Innovations in satellite technologies to drive market 167
TABLE 86 UK: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 168
TABLE 87 UK: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 168
TABLE 88 UK: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 168
TABLE 89 UK: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 168
TABLE 90 UK: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 168
TABLE 91 UK: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 169
13.3.4 GERMANY 169
13.3.4.1 Increasing demand for Earth observation and communication to drive market 169
TABLE 92 GERMANY: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 169
TABLE 93 GERMANY: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 169
TABLE 94 GERMANY: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 170
TABLE 95 GERMANY: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 170
TABLE 96 GERMANY: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 170
TABLE 97 GERMANY: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 170
13.3.5 FINLAND 171
13.3.5.1 Increasing partnerships among local companies to boost market 171
TABLE 98 FINLAND: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 171
TABLE 99 FINLAND: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 171
TABLE 100 FINLAND: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 171
TABLE 101 FINLAND: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 172
TABLE 102 FINLAND: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 172
TABLE 103 FINLAND: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 172
13.3.6 ITALY 172
13.3.6.1 Demand for Earth observation and science missions to drive market 172
TABLE 104 ITALY: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 173
TABLE 105 ITALY: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 173
TABLE 106 ITALY: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 173
TABLE 107 ITALY: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 173
TABLE 108 ITALY: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 174
TABLE 109 ITALY: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 174
13.3.7 REST OF EUROPE 174
TABLE 110 REST OF EUROPE: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 174
TABLE 111 REST OF EUROPE: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 175
TABLE 112 REST OF EUROPE: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 175
TABLE 113 REST OF EUROPE: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 175
TABLE 114 REST OF EUROPE: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 175
TABLE 115 REST OF EUROPE: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 176
13.4 ASIA PACIFIC 176
13.4.1 PESTLE ANALYSIS: ASIA PACIFIC 176
FIGURE 41 ASIA PACIFIC: SMALL SATELLITE SNAPSHOT 178
TABLE 116 ASIA PACIFIC: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 178
TABLE 117 ASIA PACIFIC: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 179
TABLE 118 ASIA PACIFIC: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 179
TABLE 119 ASIA PACIFIC: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 179
TABLE 120 ASIA PACIFIC: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 179
TABLE 121 ASIA PACIFIC: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 180
TABLE 122 ASIA PACIFIC: SMALL SATELLITE MARKET, BY COUNTRY, 2019–2022 (USD MILLION) 180
TABLE 123 ASIA PACIFIC: SMALL SATELLITE MARKET, BY COUNTRY, 2023–2028 (USD MILLION) 180
13.4.2 CHINA 181
13.4.2.1 Dependence on self-made space technology led to increased satellite launches in China 181
TABLE 124 CHINA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 181
TABLE 125 CHINA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 181
TABLE 126 CHINA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 181
TABLE 127 CHINA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 182
TABLE 128 CHINA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 182
TABLE 129 CHINA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 182
13.4.3 INDIA 182
13.4.3.1 12.4.4.1 Upcoming space initiatives to drive market 182
TABLE 130 INDIA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 183
TABLE 131 INDIA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 183
TABLE 132 INDIA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 183
TABLE 133 INDIA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 183
TABLE 134 INDIA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 184
TABLE 135 INDIA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 184
13.4.4 JAPAN 184
13.4.4.1 Involvement of private companies in government space programs to drive market 184
TABLE 136 JAPAN: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 184
TABLE 137 JAPAN: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 185
TABLE 138 JAPAN: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 185
TABLE 139 JAPAN: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 185
TABLE 140 JAPAN: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 185
TABLE 141 JAPAN: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 186
13.4.5 SOUTH KOREA 186
13.4.5.1 Increased government funding to provide significant opportunities for market growth 186
TABLE 142 SOUTH KOREA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 186
TABLE 143 SOUTH KOREA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 187
TABLE 144 SOUTH KOREA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 187
TABLE 145 SOUTH KOREA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 187
TABLE 146 SOUTH KOREA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 187
TABLE 147 SOUTH KOREA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 188
13.4.6 AUSTRALIA 188
13.4.6.1 Government support to new manufacturers for opening new facilities to drive market 188
TABLE 148 AUSTRALIA: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 188
TABLE 149 AUSTRALIA: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 189
TABLE 150 AUSTRALIA: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 189
TABLE 151 AUSTRALIA: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 189
TABLE 152 AUSTRALIA: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 189
TABLE 153 AUSTRALIA: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 190
13.4.7 REST OF ASIA PACIFIC 190
TABLE 154 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY MASS, 2019–2022 (USD MILLION) 190
TABLE 155 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY MASS, 2023–2028 (USD MILLION) 190
TABLE 156 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY TYPE, 2019–2022 (USD MILLION) 191
TABLE 157 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY TYPE, 2023–2028 (USD MILLION) 191
TABLE 158 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY END USE, 2019–2022 (USD MILLION) 191
TABLE 159 REST OF ASIA PACIFIC: SMALL SATELLITE MARKET, BY END USE, 2023–2028 (USD MILLION) 191

 

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