ガス絶縁開閉装置の市場:設置(屋内、屋外)、絶縁タイプ(SF6、SF6フリー)、定格電圧、構成(ハイブリッド、絶縁相、統合三相、コンパクトGIS)、エンドユーザー、地域別 - 2028年までの世界予測Gas Insulated Switchgear Market by Installation (Indoor, Outdoor), Insulation Type (SF6, SF6 free), Voltage Rating, Configuration (Hybrid, Isolated Phase, Integrated three phase, Compact GIS), End-User and Region - Global Forecast to 2028 ガス絶縁開閉装置の世界市場は、2023年の推定238億米ドルから顕著な伸びを示し、2023年から2028年までのCAGRは5.8%と堅調に推移し、2028年には316億米ドルに達する勢いである。このようなガス絶縁開閉装置市場の... もっと見る
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サマリーガス絶縁開閉装置の世界市場は、2023年の推定238億米ドルから顕著な伸びを示し、2023年から2028年までのCAGRは5.8%と堅調に推移し、2028年には316億米ドルに達する勢いである。このようなガス絶縁開閉装置市場の成長は、近年のエネルギー消費の増加による世界的なエネルギー需要の増加と密接に関連しており、電力需要急増の主な要因となっている。主要な原動力の中では、産業部門が需要増加の主な原動力として浮上しているが、商業、サービス、住宅部門も大きく貢献している。エネルギー資源に対する旺盛な需要は、エネルギー需給の変動をもたらし、その結果、エネルギー市場における価格変動をもたらす。この価格変動は主に、良好な経済状況、エネルギー資源の利用可能性、電力消費の増加など、さまざまな要因が絡み合っていることに起因している。さらに、特にホームオートメーションやビルオートメーションなどのアプリケーションにおけるモノのインターネット(IoT)の出現により、エネルギー管理が重視されるようになった。その結果、エネルギー消費の監視と最適化を促進するガス絶縁開閉装置の必要性が高まっている。六フッ化硫黄(SF6)ガスは、ガス気密金属筐体に導入され、ガス絶縁開閉装置(GIS)変電所内で電流を流すすべてのコンポーネントの絶縁とアーク消弧の両方の媒体として機能する。SF6は乾燥した不活性ガスであるため、不燃性で劣化しないことは注目に値する。しかし、SF6は「温室効果ガス」(GHG)として認識されているフッ素系ガスのカテゴリーに属し、全GHGの中で地球温暖化に寄与する可能性が最も高い。SF6排出量の減少は、米国における環境保護庁(EPA)のSF6審査に影響を与える。これにより、SF6の使用に対する規制がさらに厳しくなる可能性がある。SF6の使用に適用される可能性のある規制のほとんどは、Fガスとして知られる化学的に類似したフッ素系ガスのファミリーに関連している。Fガス規制が厳しくなればなるほど、SF6の使用量に大きな影響を与え、最終的にはガス絶縁開閉装置市場に影響を与えることになる。"電圧定格別では16~27kVセグメントが2023年から2028年にかけて最も急成長する市場 "電気インフラの領域では、16~27kV用途向けに設計された中電圧ガス絶縁開閉装置(GIS)が、そのコンパクトな設計、信頼性の高い性能、メンテナンス要件の低減により、配電および産業環境の両方で脚光を浴びている。しかし、一般的に使用されている絶縁ガスである六フッ化硫黄(SF6)の環境への影響に対する懸念の高まりから、より持続可能で環境に優しい絶縁代替品に関する広範な研究が行われるようになり、環境に配慮したGIS技術への業界全体のシフトを反映している。さらに、国際エネルギー機関(IEA)の報告によると、2022年の世界のエネルギー消費量は4.6%増と顕著な伸びを示した。このエネルギー需要の急増は、インド、中国、アラブ首長国連邦、アルゼンチンなどの新興経済大国がこうしたイニシアチブを推進する中、送電インフラへの大幅な投資を促している。その結果、この特定分野のガス絶縁開閉装置市場は、力強い成長と統合が見込まれている。 「絶縁タイプ別ではSF6セグメントが2023年から2028年にかけて最大市場に」ガス絶縁開閉装置(GIS)は、相間および対地絶縁に中程度の圧力の誘電性ガスである六フッ化硫黄(SF6)に依存している。導体、サーキット・ブレーカー、スイッチ、電圧変圧器、電流変圧器などの高電圧部品は、SF6で満たされた金属ケーシングの中に収められている。SF6充填GISシステムは、空気で絶縁された代替品と比較して、スペースに制約のある環境で大きな利点を提供し、はるかに小さなスペースで同じ絶縁特性を実現します。SF6は無毒、不活性、無色、無味、無臭、不燃性のガスで、優れた絶縁特性とアーク遮断特性を持ち、石油や空気のような古い媒体に代わって、最新の高電圧回路遮断に適した選択肢となっている。アジア太平洋地域は、世界のガス絶縁開閉装置市場で主導権を握る構えであり、2023年から2028年の間に最も高い年間平均成長率(CAGR)を示すと予想されている。この地域の優位性は、アジア主要国の堅調な経済成長と急速な発展に起因している。ガス絶縁開閉器は、アジア太平洋地域の産業、商業・施設、電力会社、データセンター、アフターマーケットなどのエンドユーザーで主に使用されている。同地域の製造部門は、資本コストと労働コストの低下により、市場の持続的な拡大が見込まれている。中国やインドなどの人口増加に伴い、発電需要が高まっている。この地域の拡大するエネルギー需要を効率的に満たすため、クリーンなエネルギー源が広く採用されている。これらの国々は、再生可能エネルギー源の国家送電網への統合を促進するため、老朽化したインフラの近代化を積極的に進めている。その結果、電気調整と故障保護のためのガス絶縁開閉装置の需要は大幅な成長が見込まれ、アジア太平洋地域のガス絶縁開閉装置市場を上昇させている:主要な業界参加者、専門家、主要市場プレイヤーのCレベル幹部、業界コンサルタントなどの専門家との詳細なインタビューを実施し、重要な定性的・定量的情報を入手・検証するとともに、将来の市場展望を評価した。一次インタビューは以下のように配分された:ティア1-30%、ティア2-55%、ティア3-15%:Cレベル-30%、Dレベル-20%、その他-50%地域別:北米-18%、欧州-8%、アジア太平洋-10%、中東・アフリカ-60%、南米-4%注:「その他」には、セールスマネジャー、エンジニア、地域マネジャーを含む企業の階層は、2021年時点の総収入に基づいて定義されている:ティア1:10億米ドル超、ティア2:5億~10億米ドル、ティア3:5億米ドル未満。ガス絶縁開閉装置市場は、確立されたグローバルリーダーによって支配されている。産業用制御変圧器市場の注目すべきプレーヤーには、ABB(スイス)、シーメンス(ドイツ)、ゼネラル・エレクトリック(米国)、シュナイダー・エレクトリック(フランス)、イートン(アイルランド)、三菱電機(日本)、日新電機(日本)、CGパワー・アンド・インダストリアルソリューションズ(インド)、富士電機(日本)、パウエル・インダストリーズ(米国)、ヒュンダイ・エレクトリック・アンド・エナジー・システムズ(韓国)、日立製作所(日本)などがある。調査範囲:本レポートは、絶縁タイプ(SF6、SF6フリー)、設置(屋内、屋外)、電圧定格(5kVまで、6~15kV、16~27kV、28~40.5kV、40.6~73kV、74~220kV、220kV以上)、構成(ハイブリッド、コンパクトGIS、統合三相、絶縁相)、エンドユーザー(産業、商業・施設、電気ユーティリティ、データセンター、アフターマーケット)、地域(アジア太平洋、北米、欧州、中東・アフリカ、南米)。また当レポートでは、ガス絶縁開閉装置市場の質的・量的分析を徹底的に行い、主要な市場促進要因、制限、機会、課題を包括的に検証しています。さらに、競合状況の評価、市場ダイナミクスの分析、価値ベースの市場予測、ガス絶縁開閉装置市場の将来動向など、市場の重要な側面をカバーしています。レポート購入の主な利点本レポートは、ガス絶縁開閉装置市場における既存の業界リーダーと新規参入者の双方に有益となるよう配慮して作成されています。市場全体だけでなく、個々のサブセグメントについても信頼性の高い収益予測を提供しています。このデータは関係者にとって貴重な資料であり、競争状況を包括的に理解し、事業のための効果的な市場戦略を策定することを可能にします。さらに、当レポートは関係者が市場の現状を把握するためのチャネルとして機能し、市場促進要因、限界、課題、成長機会に関する本質的な洞察を提供します。これらの洞察を取り入れることで、関係者は十分な情報に基づいた意思決定を行うことができ、常に進化するガス絶縁開閉装置業界のダイナミクスについて情報を得ることができます。- 主な推進要因(信頼性が高く効率的な電力供給に対する需要の高まり、再生可能エネルギーへの世界的移行をサポートするためのGISの活用、電気安全性と効率性の向上のためのGIS技術の採用)、阻害要因(SF6フリーGISの開発と展開)、機会(停電を減らし信頼性を向上させるための電力網近代化への投資)の分析、ガス絶縁開閉装置市場の成長に影響を与える阻害要因(SF6フリーGISの開発・展開)、機会(停電削減と信頼性向上のための電力網近代化投資、GISの効率性・信頼性・持続可能性向上のためのスマート化・新興開閉装置技術、工業生産と再生可能エネルギーの成長を支えるGISへの投資)、課題(GIS市場における環境・コスト・インフラ・都市・持続可能性の課題への対応)。- 製品開発/イノベーション:ガス絶縁開閉装置市場は、製品開発と技術革新に主眼を置き、常に進化を続けている。ABB、シーメンス、シュナイダーエレクトリック、ゼネラルエレクトリックなどの業界大手企業は、需要の変化や環境への配慮に対応するため、製品ラインナップの拡充に最前線で取り組んでいる。六フッ化硫黄(SF6)に関連する環境問題の高まりを受けて、SF6フリーの代替品の開発と採用が大きく推進されている。これらの代替品は、SF6の性能特性を維持しつつ、その環境フットプリントを軽減することを目的としている。さらに、デジタル技術とモノのインターネット(IoT)の統合により、ガス絶縁開閉装置のインテリジェンスを強化する方向へのシフトも顕著である。この統合により、遠隔監視、診断、予知保全が可能になり、最終的に機器の信頼性と効率が向上する。こうした動きに加え、市場ではガス絶縁と固体絶縁の両方の長所を併せ持つハイブリッド型ガス絶縁開閉装置が台頭している。この革新的なアプローチは、信頼性の向上と環境負荷の低減を同時に追求するものである:市場の発展:ガス絶縁開閉装置市場は、様々な要因によって著しい成長と発展を遂げている。世界的なエネルギー消費動向による電力需要の増加と、再生可能エネルギー容量の拡大が相まって、効率的で信頼性の高い配電ソリューションの必要性が高まっており、ガス絶縁開閉装置が好ましい選択肢となっている。ガス絶縁開閉器は、コンパクトな設計とメンテナンス要件の低減により、特にスペースに制約のある環境では好ましい選択肢となっている。さらに、環境に優しい絶縁ガスの進歩により、六フッ化硫黄(SF6)に関連する環境問題に対処している。同市場は、主に急速に発展している経済圏における送電インフラの成長によってさらに影響を受けており、そこでは発電、配電、クリーンエネルギー源の統合が、増大する電力需要を満たすために不可欠となっている。この市場は、特にアジア太平洋地域で大幅な拡大が見込まれており、新興のエネルギー動向と環境への配慮に対応している:市場の多様化:ガス絶縁開閉装置市場は、さまざまな要因によって著しい多様化が進んでいる。市場の多様化:ガス絶縁開閉装置市場は、さまざまな要因によって大きく多様化している。市場は、従来のSF6と新たなSF6フリー・ソリューションの両方を含む様々な絶縁タイプで多様化している。さらに、設置オプションの多様化も見られ、屋内と屋外の両方のGISシステムが、多様な用途要件を満たすために人気を集めている。定格電圧も拡大し、幅広い電気インフラのニーズに対応している。ハイブリッド、コンパクトGIS、絶縁相設計などの構成オプションは、エンドユーザーに多様性を提供している。さらに市場は、産業、商業、施設、電気ユーティリティ、データセンター、アフターマーケットなど、エンドユーザー分野ごとに多様化しており、これはさまざまな産業でガス絶縁開閉装置が幅広く利用されていることを反映している。このような市場の多様化は、需要の変化、持続可能性の目標、技術の進歩に対応する業界の努力を反映している:競争評価:ガス絶縁開閉装置市場における主要企業の市場プレゼンス、成長戦略、サービス内容を精査するために包括的な評価を実施した。これらの主要企業には、イートン(アイルランド)、ABB(スイス)、シュナイダーエレクトリック(フランス)、シーメンス(ドイツ)、三菱電機(日本)などが含まれます。本分析では、これらの主要企業の競争上の地位、市場成長を促進するためのアプローチ、ガス絶縁開閉装置セグメント内で提供するサービスの範囲について詳細な洞察を提供します。目次1 INTRODUCTION 311.1 STUDY OBJECTIVES 31 1.2 MARKET DEFINITION 31 1.2.1 INCLUSIONS AND EXCLUSIONS 32 1.2.1.1 Gas-insulated switchgear market: Inclusions and exclusions, by installation 32 1.2.1.2 Gas-insulated switchgear market: Inclusions and exclusions, by insulation type 32 1.2.1.3 Gas-insulated switchgear market: Inclusions and exclusions, by voltage rating 32 1.2.1.4 Gas-insulated switchgear market: Inclusions and exclusions, by configuration 33 1.2.1.5 Gas-insulated switchgear market: Inclusions and exclusions, by end user 33 1.2.1.6 Gas-insulated switchgear market: Inclusions and exclusions, by region 33 1.3 STUDY SCOPE 34 1.3.1 MARKETS COVERED 34 FIGURE 1 GAS-INSULATED SWITCHGEAR MARKET: SEGMENTATION 34 1.3.2 REGIONAL SCOPE 34 1.3.3 YEARS CONSIDERED 35 1.4 CURRENCY CONSIDERED 35 1.5 LIMITATIONS 35 1.6 STAKEHOLDERS 36 1.7 SUMMARY OF CHANGES 36 1.8 IMPACT OF RECESSION 37 2 RESEARCH METHODOLOGY 38 2.1 RESEARCH DATA 38 FIGURE 2 GAS-INSULATED SWITCHGEAR MARKET: RESEARCH DESIGN 38 2.1.1 SECONDARY DATA 39 2.1.1.1 Key data from secondary sources 39 2.1.2 PRIMARY DATA 39 FIGURE 3 KEY DATA FROM PRIMARY SOURCES 40 2.1.2.1 Breakdown of primaries 40 FIGURE 4 BREAKDOWN OF PRIMARIES: BY COMPANY TYPE, DESIGNATION, AND REGION 41 2.1.3 SECONDARY AND PRIMARY RESEARCH 41 FIGURE 5 MAIN METRICS CONSIDERED TO ANALYZE AND ASSESS DEMAND FOR GAS-INSULATED SWITCHGEAR 41 2.2 MARKET SIZE ESTIMATION 42 2.2.1 BOTTOM-UP APPROACH 42 FIGURE 6 MARKET SIZE ESTIMATION METHODOLOGY: BOTTOM-UP APPROACH 42 2.2.2 TOP-DOWN APPROACH 43 FIGURE 7 MARKET SIZE ESTIMATION METHODOLOGY: TOP-DOWN APPROACH 43 2.2.3 DEMAND-SIDE ANALYSIS 44 2.2.3.1 Regional analysis 44 2.2.3.2 Country-level analysis 45 2.2.3.3 Assumptions for demand-side analysis 45 2.2.3.4 Calculations for demand-side analysis 45 2.2.4 SUPPLY-SIDE ANALYSIS 46 FIGURE 8 KEY STEPS CONSIDERED TO ASSESS SUPPLY OF GAS-INSULATED SWITCHGEAR 46 FIGURE 9 GAS-INSULATED SWITCHGEAR MARKET: SUPPLY-SIDE ANALYSIS 46 2.2.4.1 Assumptions for supply-side analysis 47 2.2.4.2 Calculations for supply-side analysis 47 2.2.5 MARKET FORECAST 47 2.3 IMPACT OF RECESSION ON GAS-INSULATED SWITCHGEAR MARKET 47 2.4 MARKET BREAKDOWN AND DATA TRIANGULATION 48 FIGURE 10 DATA TRIANGULATION 48 3 EXECUTIVE SUMMARY 49 TABLE 1 GAS-INSULATED SWITCHGEAR MARKET: SNAPSHOT 49 FIGURE 11 ASIA PACIFIC DOMINATED GAS-INSULATED SWITCHGEAR MARKET IN 2022 50 FIGURE 12 OUTDOOR SEGMENT TO ACCOUNT FOR LARGER SHARE OF GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION, IN 2028 51 FIGURE 13 SF6 SEGMENT TO REGISTER HIGHEST CAGR IN GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE, DURING FORECAST PERIOD 51 FIGURE 14 ABOVE 220 KV SEGMENT TO LEAD GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING, IN 2028 52 FIGURE 15 HYBRID SEGMENT TO DOMINATE GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION, IN 2028 53 FIGURE 16 ELECTRICAL UTILITIES SEGMENT TO HOLD LARGEST SHARE OF GAS-INSULATED SWITCHGEAR MARKET, BY END USER, IN 2028 53 4 PREMIUM INSIGHTS 54 4.1 ATTRACTIVE OPPORTUNITIES FOR PLAYERS IN GAS-INSULATED SWITCHGEAR MARKET 54 FIGURE 17 ASIA PACIFIC TO LEAD GAS-INSULATED SWITCHGEAR MARKET BETWEEN 2023 AND 2028 54 4.2 GAS-INSULATED SWITCHGEAR MARKET, BY REGION 54 FIGURE 18 GAS-INSULATED SWITCHGEAR MARKET IN ASIA PACIFIC TO EXHIBIT HIGHEST CAGR DURING FORECAST PERIOD 54 4.3 GAS-INSULATED SWITCHGEAR MARKET IN ASIA PACIFIC, BY INSTALLATION AND COUNTRY, 2022 55 FIGURE 19 OUTDOOR SEGMENT AND CHINA ACCOUNTED FOR LARGEST SHARES OF GAS-INSULATED SWITCHGEAR MARKET IN ASIA PACIFIC IN 2022 55 4.4 GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION 55 FIGURE 20 OUTDOOR SEGMENT TO HOLD LARGER SHARE OF GAS-INSULATED SWITCHGEAR MARKET IN 2028 55 4.5 GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE 56 FIGURE 21 SF6 SEGMENT TO ACCOUNT FOR LARGER SHARE OF GAS-INSULATED SWITCHGEAR MARKET IN 2028 56 4.6 GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING 56 FIGURE 22 ABOVE 220 KV SEGMENT TO ACCOUNT FOR LARGEST SHARE OF GAS-INSULATED SWITCHGEAR MARKET IN 2028 56 4.7 GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION 57 FIGURE 23 HYBRID SEGMENT TO DOMINATE GAS-INSULATED SWITCHGEAR MARKET IN 2028 57 4.8 GAS-INSULATED SWITCHGEAR MARKET, BY END USER 57 FIGURE 24 ELECTRIC UTILITIES SEGMENT TO LEAD GAS-INSULATED SWITCHGEAR MARKET IN 2028 57 5 MARKET OVERVIEW 58 5.1 INTRODUCTION 58 5.2 MARKET DYNAMICS 59 FIGURE 25 GAS-INSULATED SWITCHGEAR MARKET: DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES 59 5.2.1 DRIVERS 59 5.2.1.1 Growing demand for reliable and efficient power supply 59 TABLE 2 ELECTRICITY PRICES IN SELECTED OECD COUNTRIES, 2022 (USD/UNIT) 61 5.2.1.2 Global transition toward renewable energy 61 FIGURE 26 INSTALLED RENEWABLE ENERGY CAPACITY, 2016–2022 62 5.2.1.3 Enhanced electrical safety and efficiency offered by gas-insulated switchgear 62 5.2.2 RESTRAINTS 63 5.2.2.1 Development and deployment of SF6-free gas-insulated switchgear 63 TABLE 3 GLOBAL WARMING POTENTIAL OF GREENHOUSE GASES (100-YEAR TIME HORIZON) 64 5.2.3 OPPORTUNITIES 64 5.2.3.1 Focus on modernizing power grids to reduce blackouts and improve reliability 64 5.2.3.2 Adoption of smart and emerging switchgear technologies to improve efficiency, reliability, and sustainability of power grids 65 5.2.3.3 Investments in gas-insulated switchgear to boost industrial production and adoption of renewable energy 66 FIGURE 27 GLOBAL GDP GROWTH, 2010–2022 66 5.2.4 CHALLENGES 67 5.2.4.1 High procurement costs, strict regulations against SF6 gas, and costly maintenance procedures of gas-insulated switchgear 67 5.3 PORTER’S FIVE FORCES ANALYSIS 68 FIGURE 28 GAS-INSULATED SWITCHGEAR MARKET: PORTER’S FIVE FORCES ANALYSIS 68 TABLE 4 GAS-INSULATED SWITCHGEAR MARKET: PORTER’S FIVE FORCES ANALYSIS 68 5.3.1 THREAT OF SUBSTITUTES 69 5.3.2 BARGAINING POWER OF SUPPLIERS 69 5.3.3 BARGAINING POWER OF BUYERS 69 5.3.4 THREAT OF NEW ENTRANTS 69 5.3.5 INTENSITY OF COMPETITIVE RIVALRY 70 5.4 VALUE CHAIN ANALYSIS 70 FIGURE 29 GAS-INSULATED SWITCHGEAR MARKET: VALUE CHAIN ANALYSIS 71 5.4.1 RAW MATERIAL PROVIDERS/SUPPLIERS 71 5.4.2 COMPONENT MANUFACTURERS 71 5.4.3 GAS-INSULATED SWITCHGEAR MANUFACTURERS/ASSEMBLERS 72 5.4.4 DISTRIBUTORS 72 5.4.5 APPLICATIONS 72 5.4.6 POST-SALES SERVICES 72 5.5 TECHNOLOGY ANALYSIS 72 5.5.1 AI DETECTION IN GAS-INSULATED SWITCHGEAR 72 5.5.2 IOT-CONNECTED GAS-INSULATED SWITCHGEAR 73 5.5.3 SF6-FREE GAS-INSULATED SWITCHGEAR 74 5.6 KEY CONFERENCES AND EVENTS, 2022–2024 74 TABLE 5 SWITCHGEAR MARKET: LIST OF KEY CONFERENCES AND EVENTS 74 5.7 ECOSYSTEM MAPPING 76 FIGURE 30 ECOSYSTEM ANALYSIS 76 TABLE 6 ROLE OF PARTICIPANTS IN ECOSYSTEM 77 5.8 PATENT ANALYSIS 79 FIGURE 31 LIST OF MAJOR PATENTS RELATED TO GAS-INSULATED SWITCHGEAR 79 TABLE 7 INNOVATIONS AND PATENT REGISTRATIONS RELATED TO SWITCHGEAR, MAY 2019–JULY 2023 79 5.9 CASE STUDY ANALYSIS 84 5.9.1 NORTHERN POWERGRID COMPANY TO USE ABB’S SF6-FREE SWITCHGEAR FOR ELECTRICAL NETWORK 84 5.9.2 NATIONAL GRID TO SHIFT TOWARD SF6-FREE HV SUBSTATIONS IN SOUTHEAST ENGLAND 85 5.9.3 SCHNEIDER ELECTRIC DEVELOPED SF6-FREE GREEN GIS SOLUTION 85 5.10 TRADE ANALYSIS 86 5.10.1 TRADE ANALYSIS RELATED TO ELECTRICAL APPARATUS FOR SWITCHING OR PROTECTING ELECTRICAL CIRCUITS WITH VOLTAGE EXCEEDING 1,000 VOLTS 86 5.10.1.1 Import scenario 86 TABLE 8 IMPORT SCENARIO FOR PRODUCTS UNDER HS CODE 8535, BY COUNTRY, 2020–2022 (USD) 86 5.10.1.2 Export scenario 87 TABLE 9 EXPORT SCENARIO FOR PRODUCTS UNDER HS CODE 8535, BY COUNTRY, 2020–2022 (USD) 87 5.10.2 TRADE ANALYSIS RELATED TO ELECTRICAL APPARATUS FOR SWITCHING OR PROTECTING ELECTRICAL CIRCUITS WITH VOLTAGE LOWER THAN 1,000 VOLTS 89 5.10.2.1 Import scenario 89 TABLE 10 IMPORT SCENARIO FOR PRODUCTS UNDER HS CODE 853690, BY COUNTRY, 2020–2022 (USD) 89 5.10.2.2 Export scenario 90 TABLE 11 EXPORT SCENARIO FOR PRODUCTS UNDER HS CODE 853690, BY COUNTRY, 2020–2022 (USD) 90 5.11 PRICING ANALYSIS 91 5.11.1 AVERAGE SELLING PRICE OF GAS-INSULATED SWITCHGEAR, BY VOLTAGE RATING 91 TABLE 12 AVERAGE SELLING PRICE OF GAS-INSULATED SWITCHGEAR, BY VOLTAGE RATING, 2022 91 TABLE 13 AVERAGE SELLING PRICE OF GAS-INSULATED SWITCHGEAR OFFERED BY THREE KEY PLAYERS, BY VOLTAGE RATING, 2022 92 FIGURE 32 AVERAGE SELLING PRICE OF GAS-INSULATED SWITCHGEAR OFFERED BY THREE KEY PLAYERS, BY VOLTAGE RATING, 2022 92 5.12 TARIFFS AND REGULATORY LANDSCAPE 92 5.12.1 TARIFFS RELATED TO GAS-INSULATED SWITCHGEAR 93 TABLE 14 IMPORT VALUES FOR LOW-VOLTAGE PROTECTION EQUIPMENT UNDER HS CODE 853690, 2022 93 TABLE 15 IMPORT VALUES FOR HIGH-VOLTAGE PROTECTION EQUIPMENT UNDER HS CODE 8535, 2022 94 5.12.2 REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 95 TABLE 16 NORTH AMERICA: LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 95 TABLE 17 EUROPE: LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 96 TABLE 18 ASIA PACIFIC: LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 97 TABLE 19 ROW: LIST OF REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 98 5.12.3 CODES AND REGULATIONS RELATED TO GAS-INSULATED SWITCHGEAR 98 TABLE 20 GAS-INSULATED SWITCHGEAR MARKET: CODES AND REGULATIONS 98 5.13 TRENDS/DISRUPTIONS IMPACTING CUSTOMERS’ BUSINESSES 100 FIGURE 33 TRENDS/DISRUPTIONS IMPACTING CUSTOMERS’ BUSINESSES 101 5.14 KEY STAKEHOLDERS AND BUYING CRITERIA 101 5.14.1 KEY STAKEHOLDERS IN BUYING PROCESS 101 FIGURE 34 INFLUENCE OF KEY STAKEHOLDERS ON BUYING PROCESS FOR TOP THREE END USERS 101 TABLE 21 INFLUENCE OF KEY STAKEHOLDERS ON BUYING PROCESS FOR TOP THREE END USERS 102 5.14.2 BUYING CRITERIA 102 FIGURE 35 INFLUENCE OF KEY STAKEHOLDERS ON BUYING PROCESS FOR TOP THREE END USERS 102 TABLE 22 KEY BUYING CRITERIA FOR TOP THREE END USERS 102 6 GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION 103 6.1 INTRODUCTION 104 FIGURE 36 GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION, 2022 104 TABLE 23 GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION, 2021–2028 (USD MILLION) 104 6.2 INDOOR 105 6.2.1 NEED FOR STABLE POWER SUPPLY FROM VARIOUS INDUSTRIES TO DRIVE SEGMENTAL GROWTH 105 TABLE 24 INDOOR: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 105 6.3 OUTDOOR 106 6.3.1 INCREASING APPLICATIONS IN SUBSTATIONS AND SWITCHYARDS TO PROPEL SEGMENTAL GROWTH 106 TABLE 25 OUTDOOR: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 106 7 GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE 108 7.1 INTRODUCTION 109 FIGURE 37 GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE, 2022 109 TABLE 26 GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE, 2021–2028 (USD MILLION) 109 7.2 SF6 110 7.2.1 SIGNIFICANT ADVANTAGES IN SPACE-CONSTRAINED ENVIRONMENTS TO PROPEL SEGMENTAL GROWTH 110 TABLE 27 SF6: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 111 7.3 SF6-FREE 111 7.3.1 INCREASING CONCERNS OF GLOBAL WARMING TO DRIVE ADOPTION OF SF6-FREE SEGMENT 111 TABLE 28 SF6-FREE: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 112 8 GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION 113 8.1 INTRODUCTION 114 FIGURE 38 GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION, 2022 114 TABLE 29 GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION, 2021–2028 (USD MILLION) 114 8.2 HYBRID 115 8.2.1 EFFICIENT AND COST-EFFECTIVE OPTIMIZATION OF POWER SUBSTATIONS USING HYBRID SWITCHGEAR TO PROPEL SEGMENTAL GROWTH 115 TABLE 30 HYBRID: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 115 8.3 ISOLATED PHASE 116 8.3.1 ENHANCED SAFETY AND RELIABILITY WITH ISOLATED PHASE GAS-INSULATED SWITCHGEAR CONFIGURATION TO DRIVE SEGMENTAL GROWTH 116 TABLE 31 ISOLATED PHASE: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 116 8.4 INTEGRATED THREE-PHASE 116 8.4.1 RAPIDLY INCREASING URBAN AND INDUSTRIAL POWER NEEDS TO BOOST INTEGRATED THREE-PHASE MARKET GROWTH 116 TABLE 32 INTEGRATED THREE-PHASE: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 117 8.5 COMPACT GIS 117 8.5.1 MINIMIZED SPATIAL REQUIREMENTS WITH OPTIMIZED PERFORMANCE AND RELIABILITY ADVANTAGES OF COMPACT GIS TO FUEL SEGMENTAL GROWTH 117 TABLE 33 COMPACT GIS: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 118 9 GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING 119 9.1 INTRODUCTION 120 FIGURE 39 GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING, 2022 120 TABLE 34 GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING, 2021–2028 (USD MILLION) 121 9.2 UP TO 5 KV 121 9.2.1 NEED TO OPTIMIZE MEDIUM VOLTAGE SOLUTIONS IN URBAN AND SPACE-RESTRICTED ENVIRONMENTS TO DRIVE SEGMENTAL GROWTH 121 TABLE 35 UP TO 5 KV: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 122 9.3 6 TO 15 KV 122 9.3.1 DEPLOYMENT IN VERSATILE INDUSTRIAL AND COMMERCIAL SETTINGS TO PROPEL SEGMENTAL GROWTH 122 TABLE 36 6 TO 15 KV: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 123 9.4 16 TO 27 KV 123 9.4.1 INCREASING INVESTMENTS IN TRANSMISSION AND DISTRIBUTION INFRASTRUCTURE IN EMERGING ECONOMIES TO SUPPORT SEGMENTAL GROWTH 123 TABLE 37 16 TO 27 KV: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 124 9.5 28 TO 40.5 KV 124 9.5.1 NEED TO IMPROVE RELIABILITY AND UPTIME WITH MEDIUM VOLTAGE GAS-INSULATED SWITCHGEAR TO BOOST SEGMENTAL GROWTH 124 TABLE 38 28 TO 40.5 KV: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 125 9.6 40.6 TO 73 KV 125 9.6.1 GROWING DEMAND FOR COMPACT AND SPACE-SAVING DESIGNS TO DRIVE SEGMENTAL GROWTH 125 TABLE 39 40.6 TO 73 KV: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 126 9.7 74 TO 220 KV 126 9.7.1 INVESTMENTS IN TRANSMISSION INFRASTRUCTURE TO BOOST SEGMENTAL GROWTH 126 TABLE 40 74 TO 220 KV: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 127 9.8 ABOVE 220 KV 127 9.8.1 OPTIMIZING EFFICIENCY OF ULTRA-HIGH-VOLTAGE TRANSMISSIONS AND SHIFT TOWARD SUSTAINABLE POWER GENERATION TO BOOST SEGMENTAL GROWTH 127 TABLE 41 ABOVE 220 KV: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 128 10 GAS-INSULATED SWITCHGEAR MARKET, BY END USER 129 10.1 INTRODUCTION 130 FIGURE 40 GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2022 130 TABLE 42 GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 131 10.2 INDUSTRIAL 131 TABLE 43 INDUSTRIAL: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 132 TABLE 44 INDUSTRIAL: GAS-INSULATED SWITCHGEAR MARKET, BY TYPE, 2021–2028 (USD MILLION) 132 10.2.1 PROCESS 133 10.2.1.1 Need for highly reliable and secure power supply with robust protection mechanisms to drive deployment of gas-insulated switchgear 133 10.2.2 DISCRETE 133 10.2.2.1 Increasing need for reliable power distribution and adoption of renewable energy sources to fuel demand 133 10.2.3 OIL & GAS 133 10.2.3.1 Capability to mitigate electrical faults and enhance safety and operational efficiency to propel use of gas-insulated switchgear 133 10.2.4 OTHERS 134 10.3 COMMERCIAL & INSTITUTIONAL 134 TABLE 45 COMMERCIAL & INSTITUTIONAL: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 135 TABLE 46 COMMERCIAL & INSTITUTIONAL: GAS-INSULATED SWITCHGEAR MARKET, BY TYPE, 2021–2028 (USD MILLION) 135 10.3.1 COMMERCIAL 135 10.3.1.1 Need for dependable and efficient electricity distribution to different businesses and facilities to fuel demand 135 10.3.2 INSTITUTIONAL 136 10.3.2.1 Implementation of gas-insulated switchgear in powering educational institutions to contribute to demand 136 10.3.3 INFRASTRUCTURE 136 10.3.3.1 Requirement for reliable electricity distribution for essential infrastructure to support market growth 136 10.3.4 GOVERNMENT 136 10.3.4.1 Need to empower government operations and develop infrastructure to propel demand 136 10.4 ELECTRICAL UTILITIES 137 TABLE 47 ELECTRICAL UTILITIES: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 137 TABLE 48 ELECTRICAL UTILITIES: GAS-INSULATED SWITCHGEAR MARKET, BY TYPE, 2021–2028 (USD MILLION) 138 10.4.1 GENERATION 138 10.4.1.1 Role in controlling and safeguarding electrical circuits and equipment within power generation facilities to drive demand for gas-insulated switchgear 138 10.4.2 T&D 139 10.4.2.1 Advancements in switchgear technology to manage power fluctuation and electrical grid stability in T&D to fuel demand for gas-insulated switchgear 139 10.5 DATA CENTERS 139 TABLE 49 DATA CENTERS: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 140 TABLE 50 DATA CENTERS: GAS-INSULATED SWITCHGEAR MARKET, BY TYPE, 2021–2028 (USD MILLION) 140 10.5.1 NON-HYPERSCALE 140 10.5.1.1 Fostering data center resilience with gas-insulated switchgear to fuel market growth 140 10.5.2 HYPERSCALE 141 10.5.2.1 Need for compact and dependable power distribution system to drive market for gas-insulated switchgear 141 10.6 AFTERMARKET 141 10.6.1 NEED TO SUPPORT CRITICAL INFRASTRUCTURE TO CONTRIBUTE TO GAS-INSULATED SWITCHGEAR AFTERMARKET GROWTH 141 TABLE 51 AFTERMARKET: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 142 11 GAS-INSULATED SWITCHGEAR MARKET, BY REGION 143 11.1 INTRODUCTION 144 FIGURE 41 GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2022 145 FIGURE 42 GAS-INSULATED SWITCHGEAR MARKET IN ASIA PACIFIC TO REGISTER HIGHEST CAGR FROM 2023 TO 2028 145 TABLE 52 GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 146 11.2 ASIA PACIFIC 146 11.2.1 IMPACT OF RECESSION ON GAS-INSULATED SWITCHGEAR MARKET IN ASIA PACIFIC 147 FIGURE 43 ASIA PACIFIC: GAS-INSULATED SWITCHGEAR MARKET SNAPSHOT 148 11.2.2 BY INSTALLATION 148 TABLE 53 ASIA PACIFIC: GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION, 2021–2028 (USD MILLION) 148 11.2.3 BY INSULATION TYPE 149 TABLE 54 ASIA PACIFIC: GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE, 2021–2028 (USD MILLION) 149 11.2.4 BY VOLTAGE RATING 149 TABLE 55 ASIA PACIFIC: GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING, 2021–2028 (USD MILLION) 149 11.2.5 BY CONFIGURATION 149 TABLE 56 ASIA PACIFIC: GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION, 2021–2028 (USD MILLION) 149 11.2.6 BY END USER 150 TABLE 57 ASIA PACIFIC: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 150 11.2.7 BY COUNTRY 150 TABLE 58 ASIA PACIFIC: GAS-INSULATED SWITCHGEAR MARKET, BY COUNTRY, 2021–2028 (USD MILLION) 150 11.2.7.1 China 150 11.2.7.1.1 Substantial investments in infrastructure projects and demand for gas-insulated switchgear from power generation and transmission sectors to drive market 150 TABLE 59 CHINA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 151 11.2.7.2 India 151 11.2.7.2.1 Growing electrification and clean energy commitments to propel market 151 TABLE 60 INDIA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 152 11.2.7.3 Japan 152 11.2.7.3.1 Development of more efficient, reliable, and environmentally friendly GIS technologies to support market growth 152 TABLE 61 JAPAN: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 153 11.2.7.4 South Korea 154 11.2.7.4.1 Government support for increasing adoption of gas-insulated switchgear in various sectors to fuel market growth 154 TABLE 62 SOUTH KOREA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 155 11.2.7.5 Australia 155 11.2.7.5.1 Electrification of Australia's railway network to boost demand 155 TABLE 63 AUSTRALIA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 156 11.2.7.6 Rest of Asia Pacific 156 TABLE 64 REST OF ASIA PACIFIC: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 157 11.3 NORTH AMERICA 157 11.3.1 IMPACT OF RECESSION ON GAS-INSULATED SWITCHGEAR MARKET IN NORTH AMERICA 158 11.3.2 BY INSTALLATION 158 TABLE 65 NORTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION, 2021–2028 (USD MILLION) 158 11.3.3 BY INSULATION TYPE 159 TABLE 66 NORTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE, 2021–2028 (USD MILLION) 159 11.3.4 BY VOLTAGE RATING 159 TABLE 67 NORTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING, 2021–2028 (USD MILLION) 159 11.3.5 BY CONFIGURATION 159 TABLE 68 NORTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION, 2021–2028 (USD MILLION) 159 11.3.6 BY END USER 160 TABLE 69 NORTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 160 11.3.7 BY COUNTRY 160 TABLE 70 NORTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY COUNTRY, 2021–2028 (USD MILLION) 160 11.3.7.1 US 160 11.3.7.1.1 Replacement of aging power infrastructure to drive market 160 TABLE 71 US: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 162 11.3.7.2 Canada 162 11.3.7.2.1 Focus on sustainability and safe, dependable transmission of energy with reduced energy footprint to boost market growth 162 TABLE 72 CANADA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 163 11.3.7.3 Mexico 163 11.3.7.3.1 Increasing investments in clean energy generation and modernization of power grid to fuel demand 163 TABLE 73 MEXICO: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 164 11.4 EUROPE 164 11.4.1 IMPACT OF RECESSION ON GAS-INSULATED SWITCHGEAR MARKET IN EUROPE 165 FIGURE 44 EUROPE: GAS-INSULATED SWITCHGEAR MARKET SNAPSHOT 166 11.4.2 BY INSTALLATION 166 TABLE 74 EUROPE: GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION, 2021–2028 (USD MILLION) 166 11.4.3 BY INSULATION TYPE 167 TABLE 75 EUROPE: GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE, 2021–2028 (USD MILLION) 167 11.4.4 BY VOLTAGE RATING 167 TABLE 76 EUROPE: GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING, 2021–2028 (USD MILLION) 167 11.4.5 BY CONFIGURATION 167 TABLE 77 EUROPE: GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION, 2021–2028 (USD MILLION) 167 11.4.6 BY END USER 168 TABLE 78 EUROPE: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 168 11.4.7 BY COUNTRY 168 TABLE 79 EUROPE: GAS-INSULATED SWITCHGEAR MARKET, BY COUNTRY, 2021–2028 (USD MILLION) 168 11.4.7.1 Germany 168 11.4.7.1.1 Renewable energy integration into power distribution grid to foster market growth 168 TABLE 80 GERMANY: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 169 11.4.7.2 UK 169 11.4.7.2.1 Transition toward more sustainable energy sources to fuel market growth 169 TABLE 81 UK: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 170 11.4.7.3 Italy 171 11.4.7.3.1 Leveraging gas-insulated switchgear for enhance grid reliability and resilience to support market growth 171 TABLE 82 ITALY: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 172 11.4.7.4 France 172 11.4.7.4.1 Replacement of aging infrastructure with newer, efficient ones to boost market 172 TABLE 83 FRANCE: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 173 11.4.7.5 Spain 173 11.4.7.5.1 Utilization of gas-insulated switchgear for energy transition to generate demand 173 TABLE 84 SPAIN: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 174 11.4.7.6 Rest of Europe 174 TABLE 85 REST OF EUROPE: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 175 11.5 SOUTH AMERICA 175 11.5.1 IMPACT OF RECESSION ON GAS-INSULATED SWITCHGEAR MARKET IN SOUTH AMERICA 176 11.5.2 BY INSTALLATION 176 TABLE 86 SOUTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION, 2021–2028 (USD MILLION) 176 11.5.3 BY INSULATION TYPE 177 TABLE 87 SOUTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE, 2021–2028 (USD MILLION) 177 11.5.4 BY VOLTAGE RATING 177 TABLE 88 SOUTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING, 2021–2028 (USD MILLION) 177 11.5.5 BY CONFIGURATION 177 TABLE 89 SOUTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION, 2021–2028 (USD MILLION) 177 11.5.6 BY END USER 178 TABLE 90 SOUTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 178 11.5.7 BY COUNTRY 178 TABLE 91 SOUTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY COUNTRY, 2021–2028 (USD MILLION) 178 11.5.7.1 Brazil 178 11.5.7.1.1 Commitment to renewable energy and modernization of aging infrastructure to fuel market growth 178 TABLE 92 BRAZIL: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 179 11.5.7.2 Argentina 180 11.5.7.2.1 Need for reliable and secure power supply to oil & gas and other industries to generate demand 180 TABLE 93 ARGENTINA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 180 11.5.7.3 Rest of South America 180 TABLE 94 REST OF SOUTH AMERICA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 181 11.6 MIDDLE EAST & AFRICA 181 11.6.1 IMPACT OF RECESSION ON GAS-INSULATED SWITCHGEAR MARKET IN MIDDLE EAST & AFRICA 182 11.6.2 BY INSTALLATION 182 TABLE 95 MIDDLE EAST & AFRICA: GAS-INSULATED SWITCHGEAR MARKET, BY INSTALLATION, 2021–2028 (USD MILLION) 182 11.6.3 BY INSULATION TYPE 183 TABLE 96 MIDDLE EAST & AFRICA: GAS-INSULATED SWITCHGEAR MARKET, BY INSULATION TYPE, 2021–2028 (USD MILLION) 183 11.6.4 BY VOLTAGE RATING 183 TABLE 97 MIDDLE EAST & AFRICA: GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING, 2021–2028 (USD MILLION) 183 11.6.5 BY CONFIGURATION 183 TABLE 98 MIDDLE EAST & AFRICA: GAS-INSULATED SWITCHGEAR MARKET, BY CONFIGURATION, 2021–2028 (USD MILLION) 183 11.6.6 BY END USER 184 TABLE 99 MIDDLE EAST & AFRICA GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 184 11.6.7 BY COUNTRY 184 TABLE 100 MIDDLE EAST & AFRICA: GAS-INSULATED SWITCHGEAR MARKET, BY REGION, 2021–2028 (USD MILLION) 184 11.6.7.1 Saudi Arabia 184 11.6.7.1.1 Diversification of energy generation and infrastructure growth to boost demand for gas-insulated switchgear 184 TABLE 101 SAUDI ARABIA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 185 11.6.7.2 UAE 185 11.6.7.2.1 Substantial renewable energy generation and increasing construction activities to contribute to demand for gas-insulated switchgear 185 TABLE 102 UAE: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 186 11.6.7.3 South Africa 186 11.6.7.3.1 Healthy growth of various sectors attributed to economic growth to drive demand 186 TABLE 103 SOUTH AFRICA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 187 11.6.7.4 Kuwait 187 11.6.7.4.1 Focus on renewable energy and enhancement of power transmission and distribution infrastructure to propel market growth 187 TABLE 104 KUWAIT: GAS-INSULATED SWITCHGEAR MARKET, BY VOLTAGE RATING, 2021–2028 (USD MILLION) 188 11.6.7.5 Rest of Middle East & Africa 188 TABLE 105 REST OF MIDDLE EAST & AFRICA: GAS-INSULATED SWITCHGEAR MARKET, BY END USER, 2021–2028 (USD MILLION) 188 12 COMPETITIVE LANDSCAPE 190 12.1 INTRODUCTION 190 12.2 STRATEGIES ADOPTED BY KEY PLAYERS 190 TABLE 106 OVERVIEW OF KEY STRATEGIES DEPLOYED BY TOP PLAYERS, APRIL 2019–APRIL 2022 190 12.3 MARKET SHARE ANALYSIS OF TOP FIVE PLAYERS, 2022 193 TABLE 107 GAS-INSULATED SWITCHGEAR MARKET: DEGREE OF COMPETITION 193 FIGURE 45 GAS-INSULATED SWITCHGEAR MARKET: MARKET SHARE ANALYSIS, 2022 194 12.4 REVENUE ANALYSIS OF TOP FIVE MARKET PLAYERS, 2018–2022 195 FIGURE 46 TOP PLAYERS IN GAS-INSULATED SWITCHGEAR MARKET, 2018–2022 195 12.5 COMPANY EVALUATION MATRIX, 2022 196 12.5.1 STARS 196 12.5.2 PERVASIVE PLAYERS 196 12.5.3 EMERGING LEADERS 196 12.5.4 PARTICIPANTS 196 FIGURE 47 GAS-INSULATED SWITCHGEAR MARKET: COMPANY EVALUATION MATRIX, 2022 197 12.5.5 COMPANY FOOTPRINT 197 TABLE 108 COMPANY FOOTPRINT: BY INSULATION TYPE 197 TABLE 109 COMPANY FOOTPRINT: BY VOLTAGE RATING 198 TABLE 110 COMPANY FOOTPRINT: BY INSTALLATION 199 TABLE 111 COMPANY FOOTPRINT: BY CONFIGURATION 200 TABLE 112 COMPANY FOOTPRINT: BY END USER 201 TABLE 113 COMPANY FOOTPRINT: BY REGION 202 TABLE 114 OVERALL COMPANY FOOTPRINT 203 12.6 START-UPS/SMALL AND MEDIUM ENTERPRISES (SMES) EVALUATION MATRIX, 2022 204 12.6.1 PROGRESSIVE COMPANIES 204 12.6.2 RESPONSIVE COMPANIES 204 12.6.3 DYNAMIC COMPANIES 204 12.6.4 STARTING BLOCKS 204 FIGURE 48 GAS-INSULATED SWITCHGEAR MARKET: START-UPS/SMES EVALUATION MATRIX, 2022 205 TABLE 115 GAS-INSULATED SWITCHGEAR MARKET: LIST OF KEY START-UPS/SMES 206 12.6.5 COMPETITIVE BENCHMARKING 207 TABLE 116 GAS-INSULATED SWITCHGEAR MARKET: COMPETITIVE BENCHMARKING OF KEY START-UPS/SMES 207 12.7 COMPETITIVE SCENARIOS AND TRENDS 208 12.7.1 PRODUCT LAUNCHES 208 TABLE 117 GAS-INSULATED SWITCHGEAR MARKET: PRODUCT LAUNCHES, APRIL 2020–MARCH 2023 208 12.7.2 DEALS 210 TABLE 118 GAS-INSULATED SWITCHGEAR MARKET: DEALS, APRIL 2019–AUGUST 2023 210 12.7.3 OTHERS 214 TABLE 119 GAS-INSULATED SWITCHGEAR MARKET: OTHERS, APRIL 2019–MAY 2023 214
SummaryThe global market for gas insulated switchgear is on a trajectory to reach USD 31.6 billion by 2028, a notable increase from the estimated USD 23.8 billion in 2023, with a steady CAGR of 5.8% spanning the period from 2023 to 2028. This growth in the gas insulated switchgear market is closely aligned with the incremental rise in global energy demand, driven by the escalating consumption of energy in recent years, marking the primary catalyst for the surge in electricity demand. Among the key drivers, the industrial sector has emerged as the principal force behind the heightened demand, though the commercial, service, and residential sectors have also made substantial contributions. The robust demand for energy resources gives rise to fluctuations in energy supply and demand, resulting in price volatility within the energy market. This price variability is primarily attributed to a combination of factors, including favorable economic conditions, the availability of energy resources, and the growing consumption of electrical power. Furthermore, the emphasis on energy management has taken center stage, particularly with the advent of the Internet of Things (IoT) for applications such as home automation and building automation. Consequently, these factors underscore the imperative need for gas-insulated switchgear to facilitate the monitoring and optimization of energy consumption. Sulfur hexafluoride (SF6) gas is introduced into gas-tight metallic enclosures, where it serves as both the insulating and arc-quenching medium for all components carrying electrical current within Gas-Insulated Switchgear (GIS) substations. It's worth noting that SF6 is non-flammable and doesn't deteriorate, as it is a dry, inert gas. However, SF6 falls into the category of fluorinated gases, which are recognized as "greenhouse gases" (GHGs) and have the highest potential for contributing to global warming among all GHGs. The decrease in SF6 emissions will impact the Environmental Protection Agency's (EPA) examination of SF6 in the United States. This could lead to even more stringent restrictions on SF6 usage. Most regulations that may apply to SF6 use are related to the family of chemically similar fluorinated gases known as F-gases. As F-gas regulations become stricter, they will have a greater impact on SF6 usage, ultimately influencing the gas-insulated switchgear market. “16 to 27 kV segment, by voltage rating, to be fastest growing market from 2023 to 2028.”In the realm of electrical infrastructure, medium-voltage gas-insulated switchgear (GIS) designed for 16 to 27 kV applications has gained prominence in both distribution and industrial settings due to its compact design, reliable performance, and reduced maintenance requirements. However, growing concerns over the environmental impact of sulfur hexafluoride (SF6), the commonly used insulating gas, have led to extensive research into more sustainable and eco-friendly insulating alternatives, reflecting a broader industry shift towards environmentally conscious GIS technology. Furthermore, the year 2022 witnessed a remarkable 4.6% increase in global energy consumption, as reported by the International Energy Agency (IEA). This surge in energy demand has prompted substantial investments in transmission infrastructure, with emerging economic powerhouses like India, China, the UAE, and Argentina driving these initiatives. As a result, the gas-insulated switchgear market in this specific sector is poised for robust growth and consolidation. “SF6 segment, by insulation type, to be the largest market from 2023 to 2028.”Gas-insulated switchgear (GIS) relies on sulfur hexafluoride (SF6), a dielectric gas at moderate pressure, for insulation between phases and to the ground. High-voltage components, including conductors, circuit breakers, switches, voltage transformers, and current transformers, are enclosed within a metal casing filled with SF6. SF6-filled GIS systems offer a substantial advantage in space-constrained environments compared to air-insulated alternatives, achieving the same insulating properties in a much smaller space. SF6 is a non-toxic, inert, colorless, tasteless, odorless, and non-flammable gas with superior insulating and arc-interrupting properties, making it the preferred choice for modern high-voltage circuit interruption, replacing older mediums like oil and air.“Asia Pacific to be largest and fastest growing region in gas insulated switchgear market.” Asia Pacific is poised to take the lead in the global gas insulated switchgear market and is expected to exhibit the highest Compound Annual Growth Rate (CAGR) between 2023 and 2028. This dominance in the region is attributed to the robust economic progress and rapid development of major Asian economies. Gas insulated switchgear finds primary use among end-users such as industrial, commercial & institutional, electrical utilities, data centers and aftermarkets in the Asia Pacific region. The area's manufacturing sector is anticipated to experience sustained market expansion, driven by lower capital and labor costs. With the increasing populations in countries like China and India, there is a growing demand for electricity generation. Clean energy sources are widely adopted to efficiently meet the region's expanding energy requirements. These nations are actively modernizing their aging infrastructure to facilitate the integration of renewable energy sources into the national grid. Consequently, the demand for gas insulated switchgear for electrical regulation and fault protection is expected to witness significant growth, elevating the gas insulated switchgear market in Asia Pacific.Breakdown of Primaries: In-depth interviews with key industry participants, subject-matter experts, C-level executives of key market players, and industry consultants, among other experts, were conducted to obtain and verify critical qualitative and quantitative information, as well as to assess future market prospects. The primary interviews were distributed as follows:By Company Type: Tier 1-30%, Tier 2-55%, and Tier 3-15%By Designation: C-Level-30%, D-Level-20%, and Others-50%By Region: North America–18%, Europe–8%, Asia Pacific–10%, Middle East & Africa–60%, and South America–4%Note: “Others” include sales managers, engineers, and regional managersThe tiers of the companies are defined based on their total revenue as of 2021: Tier 1: >USD 1 billion, Tier 2: USD 500 million–1 billion, and Tier 3:
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