HVDC Transmission Market by Component (Converter Stations, Transmission Cables, and Others), Project Type (Point-to-Point, Back-to-Back, and Multi-Terminal), Technology (CCC, VSC, and lCC), Application, and Geography - Global Forecast to 2024

高電圧直流送電(HVDC)の世界市場予測(~2024年)

◆タイトル:HVDC Transmission Market by Component (Converter Stations, Transmission Cables, and Others), Project Type (Point-to-Point, Back-to-Back, and Multi-Terminal), Technology (CCC, VSC, and lCC), Application, and Geography - Global Forecast to 2024
◆商品コード:SE 3052
◆調査・発行会社:MarketsandMarkets
◆発行日:2019年1月30日
◆ページ数:148
◆レポート形式:PDF / 英語
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◆調査対象地域:グローバル
◆産業分野:半導体・電子
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【レポートの概要】

高電圧直流送電(HVDC)の世界市場は、2018年の82億米ドルから2024年には123億米ドルに達し、この期間中6.9%の年平均成長率で成長すると予測されています。この市場の成長を促す要因として、長距離伝送に最適なソリューション、VSC技術に対する需要の増大、再生可能エネルギーへのシフト、ならびに政府によるHVDC伝送に向けた政策および取り組みなどが考えられます。一方で、HVDC伝送システムの設置コストは高額にのぼることから、市場の成長が制限されると予想されます。当調査レポートでは、高電圧直流送電(HVDC)の世界市場について調査・分析し、エグゼクティブサマリー、市場インサイト、市場概観/市場動向、コンポーネント別(コンバーターステーション、伝送ケーブル、その他)分析、プロジェクトの種類別(ポイントツーポイント、バックツーバック、マルチターミナル)分析、技術別(CCC、VSC、LCC)分析、用途別分析、高電圧直流送電(HVDC)の世界市場規模及び予測、市場動向、競争状況、関連企業分析などの情報をお届けいたします。

“HVDC transmission market to grow at CAGR of 6.9% from 2018 to 2024”The HVDC transmission market is projected to reach USD 12.3 billion by 2024 from USD 8.2 billion in 2018, at a CAGR of 6.9% during 2018–2024. The growth of this market can largely be attributed to optimal solutions for long distance transmission, growing demand for VSC technology, shift toward renewable energy, and supportive government policies and initiatives for HVDC transmission. However, the high cost of installing HVDC transmission systems is expected to restrict the growth of the said market to a certain extent.
“Converter stations to register highest growth in HVDC transmission market during forecast period”
The market for converter stations is expected to grow at the highest CAGR during the forecast period. In HVDC transmission systems, converters are bi-directional: operating as a rectifier (converting AC to DC), and as an inverter (converting DC to AC). Converter stations comprise several converters in series or parallel. The requirement for more efficient power transmission and connecting asynchronous grids has filliped the demand for HVDC converter stations in recent years. These factors are expected to boost the adoption of converter stations in the coming years.
“Bulk power transmission to hold largest share of HVDC transmission market during forecast period”
HVDC systems are preferred for sending bulk power across long distances, with fewer power losses. That makes the underlying technology valuable for overcoming an important problem associated with renewable energy generation. HVDC is economical, which results in higher efficiency, no reactive power compensation, and more stable and reliable operations than an equivalent high voltage alternating current (HVAC) system transmitting the same amount of power.
“HVDC transmission market in APAC to register highest growth during forecast period”
APAC is an economically growing region owing to the presence of technologically strong countries such as China and Japan. Favorable regulatory environment and rural electrification plans are expected to drive the growth of the HVDC transmission market in APAC. In addition, demand for uninterrupted power plays a crucial role in driving HVDC adoption in the region. Moreover, emerging economies, such as China and India, provide power capacity addition across the existing power infrastructure. These factors are projected to fuel the growth of the HVDC transmission market in APAC in the coming years.

Breakdown of primary participants’ profile:
• By Company Type: Tier 1 = 57%, Tier 2 = 29%, and Tier 3 = 14%
• By Designation: C-Level Executives = 50%, Directors = 35%, and Others = 17%
• By Region: Americas = 33%, Europe = 17%, and APAC = 50%
Key players in the HVDC transmission market include ABB (Switzerland), Siemens (Germany), General Electric (US), Hitachi (Japan), Mitsubishi Electric (Japan), Nexans (France), NKT A/S (Denmark), NR Electric (China), C-EPRI Electric Power Engineering (China), and Prysmian Group (Italy). The study includes an in-depth competitive analysis of these key players, with their company profiles, recent developments, and key market strategies.

Research Coverage:
This study involves estimating the HVDC transmission market’s size and analyzing the growth potential of this market across different segments, such as component, technology, project type, application, and region. The study also includes an in-depth competitive analysis of the key market players, along with their company profiles, key observations related to product and business offerings, recent developments, and key growth strategies.

Key Benefits of Buying the Report:
The report would assist market leaders/new entrants with information on the closest approximations of the revenue numbers for the overall HVDC transmission market and its subsegments. It would help stakeholders understand the competitive landscape and gain more insights to better position their businesses and plan suitable go-to-market strategies. The report would also help stakeholders understand the pulse of the market and provide them with information on key market drivers, restraints, challenges, and opportunities.

【レポートの目次】

TABLE OF CONTENTS

1 INTRODUCTION 17
1.1 STUDY OBJECTIVES 17
1.2 MARKET DEFINITION 17
1.3 STUDY SCOPE 18
1.3.1 MARKETS COVERED 18
1.3.2 GEOGRAPHIC SCOPE 18
1.3.3 YEARS CONSIDERED 19
1.4 CURRENCY 19
1.5 LIMITATIONS 19
1.6 STAKEHOLDERS 20
2 RESEARCH METHODOLOGY 21
2.1 RESEARCH DATA 21
2.1.1 SECONDARY DATA 22
2.1.1.1 Major secondary sources 22
2.1.1.2 Key data from secondary sources 23
2.1.2 PRIMARY DATA 23
2.1.2.1 Primary interviews with experts 23
2.1.2.2 Breakdown of primaries 24
2.1.2.3 Key data from primary sources 24
2.1.3 SECONDARY AND PRIMARY RESEARCH 25
2.1.3.1 Key industry insights 25
2.2 MARKET SIZE ESTIMATION 26
2.2.1 BOTTOM-UP APPROACH 26
2.2.1.1 Approach for capturing market size by bottom-up analysis
(demand side) 26
2.2.2 TOP-DOWN APPROACH 27
2.2.2.1 Approach for capturing market size by top-down analysis
(supply side) 27
2.3 DATA TRIANGULATION 28
2.4 RESEARCH ASSUMPTIONS 29
3 EXECUTIVE SUMMARY 30
4 PREMIUM INSIGHTS 34
4.1 LUCRATIVE OPPORTUNITIES IN HVDC TRANSMISSION MARKET 34
4.2 HVDC TRANSMISSION MARKET, BY TECHNOLOGY 34
4.3 HVDC TRANSMISSION MARKET IN APAC, BY PROJECT TYPE AND COUNTRY 35
4.4 HVDC TRANSMISSION MARKET, BY COUNTRY/REGION 36
5 MARKET OVERVIEW 37
5.1 INTRODUCTION 37
5.2 MARKET DYNAMICS 37
5.2.1 DRIVERS 38
5.2.1.1 Optimal solution for long distance transmission 38
5.2.1.2 Growing demand for VSC technology 39
5.2.1.3 Shift toward renewable energy sources 40
5.2.1.4 Supportive government policies and initiatives for HVDC transmission 40
5.2.1.5 Challenges with nuclear and fossil fuel-fed power plants 40
5.2.2 RESTRAINTS 41
5.2.2.1 High cost of installing HVDC transmission systems 41
5.2.2.2 High cost of circuit breakers 41
5.2.3 OPPORTUNITIES 41
5.2.3.1 High-tech power grids expected to foster power-sharing among neighboring countries 41
5.2.3.2 Growing need for integrated networks 42
5.2.3.3 Rapid adoption of UHVDC technology in China 42
5.2.4 CHALLENGES 42
5.2.4.1 Increasing interoperability among neighboring networks 42
6 INDUSTRY TRENDS 43
6.1 VALUE CHAIN ANALYSIS 43
6.2 REGULATORY STANDARDS 45
7 HVDC TRANSMISSION MARKET, BY COMPONENT 46
7.1 INTRODUCTION 47
7.2 CONVERTER STATIONS 48
7.2.1 VALVES 49
7.2.1.1 Valve regulates, directs, and controls the flow of power transmission 49
7.2.2 THYRISTOR VALVES 50
7.2.2.1 Insulated Gate Bipolar Transistors (IGBTs) 50
7.2.2.1.1 VSC valves used in DC transmission systems use IGBTs 50
7.2.3 TRANSFORMERS 51
7.2.3.1 Transformers are among the costliest components of converter stations 51
7.2.4 HARMONIC FILTERS 51
7.2.4.1 AC filters 52
7.2.4.1.1 AC filters mitigate voltage distortion and reduce interference in AC networks 52
7.2.4.2 DC filters 52
7.2.4.2.1 DC filters stabilize harmonics generated on the DC end of a converter station 52
7.2.5 CIRCUIT BREAKERS 52
7.2.5.1 Circuit breakers protect electrical power system 52
7.2.6 REACTORS 53
7.2.6.1 Reactors reduce harmonic currents in DC systems 53
7.2.7 SURGE ARRESTERS 53
7.2.7.1 Surge arresters help to limit the magnitude of transient over-voltages in HVDC systems 53
7.3 TRANSMISSION CABLES 53
7.3.1 TRANSMISSION CABLES TRANSMIT ELECTRICITY ACROSS COUNTRIES, ISLANDS, WIND FARMS, AND OIL PLATFORMS 53
7.4 OTHERS 54
7.4.1 OTHERS INCLUDE ELECTRODES, CONTROL & PROTECTION, AND REACTIVE POWER SUPPLIES 54
8 HVDC TRANSMISSION MARKET, BY PROJECT TYPE 55
8.1 INTRODUCTION 56
8.2 POINT-TO-POINT TRANSMISSION 58
8.2.1 MONOPOLAR 60
8.2.1.1 A monopolar transmission system is a configuration with a single high-voltage DC polarity 60
8.2.2 BIPOLAR 60
8.2.2.1 Bipolar systems reduces maintenance cost as there is only 1 common path that lowers power losses during transmission 60
8.3 BACK-TO-BACK STATIONS 64
8.3.1 BACK-TO-BACK STATIONS ARE MAINLY USED FOR CONVERTERS WITHIN THE SAME CONVERTER BUILDING 64
8.4 MULTI-TERMINAL SYSTEMS 67
8.4.1 MULTI TERMINAL PROJECT TYPES TO EXHIBIT HIGHEST GROWTH DURING THE FORECAST PERIOD 67
9 HVDC TRANSMISSION MARKET, BY TECHNOLOGY 70
9.1 INTRODUCTION 71
9.2 CAPACITOR COMMUTATED CONVERTER (CCC) 72
9.2.1 CCC IS DESIGNED BY ADDING AC CAPACITORS IN SERIES BETWEEN THE TRANSFORMER AND THE VALVE 72
9.3 VOLTAGE SOURCE CONVERTER (VSC) 73
9.3.1 HVDC 73
9.3.1.1 VSC-HVDC systems are widely used in wind power applications, bulk power transmissions, submarine and underground transmissions 73
9.3.2 ULTRA-HIGH VOLTAGE DIRECT CURRENT (UHVDC) 74
9.3.2.1 VSC-UHVDC to exhibit higher growth during the forecast period 74
9.4 LINE COMMUTATED CONVERTER (LCC), (THYRISTOR BASED) 75
9.4.1 HVDC 76
9.4.1.1 Presently LCC-HVDC held higher share than LCC-UHVDC 76

9.4.2 UHVDC 76
9.4.2.1 LCC-UHVDC technology enhances power transfer capacity to 10,000 MW and extends the distance capability to over 3,000 km 76
10 HVDC TRANSMISSION MARKET, BY APPLICATION 78
10.1 INTRODUCTION 79
10.2 BULK POWER TRANSMISSION 80
10.2.1 OVERHEAD 81
10.2.1.1 Prominently found in the US, Canada, Brazil, China, and India 81
10.2.2 SUBMARINE & UNDERGROUND 81
10.2.2.1 Submarine transmission cables are used for long-distance bulk power transmission across regions or countries 81
10.3 INTERCONNECTING GRIDS 83
10.3.1 HVDC TRANSMISSION SYSTEMS CAN BE USED TO INTERCONNECT ASYNCHRONOUSLY-OPERATED POWER SYSTEMS 83
10.4 INFEED URBAN AREAS 84
10.4.1 INFEED URBAN AREAS TO EXHIBIT HIGHEST GROWTH IN COMING YEARS 84
11 GEOGRAPHIC ANALYSIS 86
11.1 INTRODUCTION 87
11.2 AMERICAS 88
11.2.1 NORTH AMERICA 91
11.2.1.1 US 92
11.2.1.1.1 Growing demand for HVDC transmission projects 92
11.2.1.2 Canada 92
11.2.1.2.1 Implementation of HVDC interconnections in the Canadian National Electrical Grid 92
11.2.1.3 Mexico 92
11.2.1.3.1 Development of power grids to meet growing electricity demand 92
11.2.2 SOUTH AMERICA 93
11.2.2.1 Brazil 93
11.2.2.1.1 Huge potential for HVDC transmission projects 93
11.2.2.2 Rest of South America 93
11.3 EUROPE 94
11.3.1 UK 96
11.3.1.1 Reduction in greenhouse gas emission to improve the transmission and distribution network 96
11.3.2 GERMANY 96
11.3.2.1 Accelerated shift from nuclear power and fossil fuels to renewables 96
11.3.3 RUSSIA 96
11.3.3.1 Potential growth for HVDC projects in the country 96

11.3.4 FRANCE 97
11.3.4.1 Increasing adoption of HVDC technology for long-distance power transmissions 97
11.3.5 REST OF EUROPE 97
11.4 APAC 97
11.4.1 CHINA 99
11.4.1.1 Policy structure attracting more investments for HVDC projects 99
11.4.2 JAPAN 100
11.4.2.1 Investments by leading players driving the market’s growth 100
11.4.3 INDIA 100
11.4.3.1 Government initiatives to facilitate economic benefits and energy security 100
11.4.4 AUSTRALIA 100
11.4.4.1 Government policies for development and commercialization of solar energy resources 100
11.4.5 REST OF APAC 101
11.5 REST OF THE WORLD (ROW) 102
11.5.1 MIDDLE EAST 103
11.5.1.1 Emerging market for HVDC technology 103
11.5.2 AFRICA 103
11.5.2.1 Upcoming HVDC projects contributing to the overall growth of the continent 103
12 COMPETITIVE LANDSCAPE 104
12.1 OVERVIEW 104
12.2 MARKET RANKING OF PLAYERS, 2017 105
12.3 COMPETITIVE SCENARIO 106
12.3.1 PRODUCT LAUNCHES/PRODUCT DEVELOPMENTS/TECHNOLOGICAL EXPANSIONS 106
12.3.2 PARTNERSHIPS, COLLABORATIONS, JOINT VENTURES, AND CONTRACTS 107
12.3.3 GEOGRAPHIC EXPANSION 108
13 COMPANY PROFILE 109
(Business Overview, Products and Solutions Offered, Recent Developments, SWOT Analysis, and MnM View)*
13.1 KEY PLAYERS 109
13.1.1 ABB 110
13.1.2 SIEMENS 114
13.1.3 GENERAL ELECTRIC 117
13.1.4 HITACHI 120
13.1.5 MITSUBISHI ELECTRIC 123
13.1.6 NEXANS 126
13.1.7 NKT A/S 128
13.1.8 NR ELECTRIC 130
13.1.9 C-EPRI ELECTRIC POWER ENGINEERING 132
13.1.10 PRYSMIAN GROUP 134
13.2 OTHER IMPORTANT PLAYERS 136
13.2.1 SCHNEIDER ELECTRIC 136
13.2.2 TOSHIBA 136
13.2.3 EPCOS 137
13.2.4 AECOM 137
13.2.5 PSC GROUP 138
13.3 KEY INNOVATORS 138
13.3.1 AMERICAN SUPERCONDUCTOR 138
13.3.2 TRANSGRID SOLUTIONS 139
13.3.3 ATCO 139
13.3.4 DOBLE ENGINEERING COMPANY 140
13.3.5 HVDC TECHNOLOGIES 140
*Details on Business Overview, Products and Solutions Offered, Recent Developments, SWOT Analysis, and MnM View might not be captured in case of unlisted companies.
14 APPENDIX 141
14.1 DISCUSSION GUIDE 141
14.2 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 144
14.3 AVAILABLE CUSTOMIZATIONS 146
14.4 RELATED REPORTS 146
14.5 AUTHOR DETAILS 147

LIST OF TABLES

TABLE 1 HVDC TRANSMISSION MARKET: REGULATORY STANDARDS 45
TABLE 2 HVDC TRANSMISSION MARKET, BY COMPONENT, 2015–2024 (USD BILLION) 48
TABLE 3 HVDC TRANSMISSION MARKET FOR VALVES, BY TYPE, 2015–2024 (USD BILLION) 51
TABLE 4 HVDC TRANSMISSION MARKET, BY CONVERTER STATION,
2015–2024 (USD BILLION) 53
TABLE 5 HVDC TRANSMISSION MARKET, BY PROJECT TYPE, 2015–2024 (USD BILLION) 57
TABLE 6 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT TRANSMISSION,
BY TECHNOLOGY, 2015–2024 (USD BILLION) 58
TABLE 7 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT TRANSMISSIONS,
BY APPLICATION, 2015–2024 (USD BILLION) 58
TABLE 8 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT TRANSMISSIONS,
BY BULK POWER TRANSMISSION APPLICATION, 2015–2024 (USD BILLION) 59
TABLE 9 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT TRANSMISSIONS,
BY REGION, 2015–2024 (USD BILLION) 59
TABLE 10 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT TRANSMISSIONS,
BY PROJECT TYPE, 2015–2024 (USD BILLION) 61
TABLE 11 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT MONOPOLAR TRANSMISSIONS, BY TECHNOLOGY, 2015–2024 (USD BILLION) 61
TABLE 12 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT BIPOLAR TRANSMISSIONS, BY TECHNOLOGY, 2015–2024 (USD BILLION) 61
TABLE 13 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT MONOPOLAR TRANSMISSIONS, BY APPLICATION, 2015–2024 (USD BILLION) 62
TABLE 14 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT MONOPOLAR TRANSMISSIONS, BY BULK POWER TRANSMISSION APPLICATION,
2015–2024 (USD BILLION) 62
TABLE 15 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT BIPOLAR TRANSMISSIONS, BY APPLICATION, 2015–2024 (USD BILLION) 62
TABLE 16 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT BIPOLAR TRANSMISSION,
BY BULK POWER TRANSMISSION APPLICATION, 2015–2024 (USD BILLION) 63
TABLE 17 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT MONOPOLAR TRANSMISSIONS, BY REGION, 2015–2024 (USD BILLION) 63
TABLE 18 HVDC TRANSMISSION MARKET FOR POINT-TO-POINT BIPOLAR TRANSMISSIONS, BY REGION, 2015–2024 (USD BILLION) 64
TABLE 19 HVDC TRANSMISSION MARKET FOR BACK-TO-BACK TRANSMISSIONS,
BY TECHNOLOGY, 2015–2024 (USD BILLION) 65
TABLE 20 HVDC TRANSMISSION MARKET FOR BACK-TO-BACK TRANSMISSIONS,
BY APPLICATION, 2015–2024 (USD BILLION) 65
TABLE 21 HVDC TRANSMISSION MARKET FOR BACK-TO-BACK TRANSMISSIONS,
BY BULK POWER TRANSMISSION APPLICATION, 2015–2024 (USD BILLION) 66
TABLE 22 HVDC TRANSMISSION MARKET FOR BACK-TO-BACK TRANSMISSIONS,
BY REGION, 2015–2024 (USD BILLION) 66
TABLE 23 HVDC TRANSMISSION MARKET FOR MULTI-TERMINAL TRANSMISSIONS,
BY TECHNOLOGY, 2015–2024 (USD BILLION) 67
TABLE 24 HVDC TRANSMISSION MARKET FOR MULTI-TERMINAL TRANSMISSIONS,
BY APPLICATION, 2015–2024 (USD BILLION) 68
TABLE 25 HVDC TRANSMISSION MARKET FOR MULTI-TERMINAL TRANSMISSIONS,
BY BULK POWER TRANSMISSION APPLICATION, 2015–2024 (USD BILLION) 68
TABLE 26 HVDC TRANSMISSION MARKET FOR MULTI-TERMINAL TRANSMISSIONS,
BY REGION, 2015–2024 (USD BILLION) 68
TABLE 27 HVDC TRANSMISSION MARKET, BY TECHNOLOGY, 2015–2024 (USD BILLION) 72
TABLE 28 HVDC TRANSMISSION MARKET FOR CCC-BASED TECHNOLOGY, BY PROJECT TYPE, 2015–2024 (USD BILLION) 73
TABLE 29 HVDC TRANSMISSION MARKET FOR VSC, BY TECHNOLOGY,
2015–2024 (USD BILLION) 74
TABLE 30 HVDC TRANSMISSION MARKET FOR VSC-BASED TECHNOLOGY, BY PROJECT TYPE, 2015–2024 (USD BILLION) 75
TABLE 31 HVDC TRANSMISSION MARKET FOR VSC-BASED TECHNOLOGY, BY POINT-TO-POINT PROJECT TYPE, 2015–2024 (USD BILLION) 75
TABLE 32 HVDC TRANSMISSION MARKET FOR LCC, BY TECHNOLOGY,
2015–2024 (USD BILLION) 76
TABLE 33 HVDC TRANSMISSION MARKET FOR LCC-BASED TECHNOLOGY, BY PROJECT TYPE, 2015–2024 (USD BILLION) 77
TABLE 34 HVDC TRANSMISSION MARKET FOR LCC-BASED TECHNOLOGY, BY POINT-TO-POINT PROJECT TYPE, 2015–2024 (USD BILLION) 77
TABLE 35 HVDC TRANSMISSION MARKET, BY APPLICATION, 2015–2024 (USD BILLION) 80
TABLE 36 HVDC TRANSMISSION MARKET FOR BULK POWER TRANSMISSION, BY PROJECT TYPE, 2015–2024 (USD BILLION) 80
TABLE 37 HVDC TRANSMISSION MARKET FOR BULK POWER TRANSMISSION,
BY POINT-TO-POINT PROJECT TYPE, 2015–2024 (USD BILLION) 81
TABLE 38 HVDC TRANSMISSION MARKET, BY BULK POWER TRANSMISSION APPLICATIONS, 2015–2024 (USD BILLION) 81
TABLE 39 HVDC TRANSMISSION MARKET FOR OVERHEAD BULK POWER TRANSMISSIONS, BY PROJECT TYPE, 2015–2024 (USD BILLION) 82
TABLE 40 HVDC TRANSMISSION MARKET FOR SUBMARINE & UNDERGROUND BULK POWER TRANSMISSIONS, BY PROJECT TYPE, 2015–2024 (USD BILLION) 82
TABLE 41 HVDC TRANSMISSION MARKET FOR INTERCONNECTING GRIDS, BY PROJECT TYPE, 2015–2024 (USD BILLION) 83
TABLE 42 HVDC TRANSMISSION MARKET FOR INTERCONNECTING GRIDS,
BY POINT-TO-POINT PROJECT TYPE, 2015–2024 (USD BILLION) 83
TABLE 43 HVDC TRANSMISSION MARKET FOR INFEED URBAN AREAS, BY PROJECT TYPE, 2015–2024 (USD BILLION) 84
TABLE 44 HVDC TRANSMISSION MARKET FOR INFEED URBAN AREAS, BY POINT-TO-POINT PROJECT TYPE, 2015–2024 (USD BILLION) 85
TABLE 45 HVDC TRANSMISSION MARKET, BY REGION, 2015–2024 (USD BILLION) 88
TABLE 46 HVDC TRANSMISSION MARKET IN AMERICAS, BY REGION,
2015–2024 (USD BILLION) 89
TABLE 47 HVDC TRANSMISSION MARKET IN NORTH AMERICA, BY COUNTRY,
2015–2024 (USD BILLION) 90
TABLE 48 HVDC TRANSMISSION MARKET IN SOUTH AMERICA, BY COUNTRY,
2015–2024 (USD BILLION) 90
TABLE 49 HVDC TRANSMISSION MARKET IN AMERICAS, BY PROJECT TYPE,
2015–2024 (USD BILLION) 90
TABLE 50 HVDC TRANSMISSION MARKET IN AMERICAS, BY POINT-TO-POINT PROJECT TYPE, 2015–2024 (USD BILLION) 91
TABLE 51 HVDC TRANSMISSION MARKET IN EUROPE, BY COUNTRY,
2015–2024 (USD BILLION) 95
TABLE 52 HVDC TRANSMISSION MARKET IN EUROPE, BY PROJECT TYPE,
2015–2024 (USD BILLION) 95
TABLE 53 HVDC TRANSMISSION MARKET IN EUROPE, BY POINT-TO-POINT PROJECT TYPE, 2015–2024 (USD BILLION) 95
TABLE 54 HVDC TRANSMISSION MARKET IN APAC, BY COUNTRY, 2015–2024 (USD BILLION) 98
TABLE 55 HVDC TRANSMISSION MARKET IN APAC, BY PROJECT TYPE,
2015–2024 (USD BILLION) 99
TABLE 56 HVDC TRANSMISSION MARKET IN APAC, BY POINT-TO-POINT PROJECT TYPE, 2015–2024 (USD BILLION) 99
TABLE 57 HVDC TRANSMISSION MARKET IN ROW, BY REGION, 2015–2024 (USD BILLION) 102
TABLE 58 HVDC TRANSMISSION MARKET IN ROW, BY PROJECT TYPE,
2015–2024 (USD BILLION) 102
TABLE 59 HVDC TRANSMISSION MARKET IN ROW, BY POINT-TO-POINT PROJECT TYPE, 2015–2024 (USD BILLION) 103
TABLE 60 PRODUCT LAUNCHES/PRODUCT DEVELOPMENTS/TECHNOLOGICAL EXPANSIONS, 2015–2018 106
TABLE 61 PARTNERSHIPS, COLLABORATIONS, JOINT VENTURES, AND CONTRACTS,
2015–2018 107
TABLE 62 GEOGRAPHIC EXPANSION, 2016–2017 108


LIST OF FIGURES

FIGURE 1 HVDC TRANSMISSION MARKET: RESEARCH DESIGN 21
FIGURE 2 MARKET SIZE ESTIMATION METHODOLOGY: BOTTOM-UP APPROACH 26
FIGURE 3 MARKET SIZE ESTIMATION METHODOLOGY: TOP-DOWN APPROACH 27
FIGURE 4 DATA TRIANGULATION 28
FIGURE 5 HVDC TRANSMISSION MARKET, 2015–2024 (USD BILLION) 30
FIGURE 6 CONVERTER STATIONS TO LEAD HVDC TRANSMISSION MARKET DURING FORECAST PERIOD 31
FIGURE 7 VSC-BASED TECHNOLOGY TO GROW AT HIGHEST CAGR IN HVDC TRANSMISSION MARKET DURING FORECAST PERIOD 31
FIGURE 8 POINT-TO-POINT PROJECT TYPE TO LEAD HVDC TRANSMISSION MARKET DURING FORECAST PERIOD 32
FIGURE 9 BULK POWER TRANSMISSION APPLICATION TO HOLD LARGEST SHARE IN HVDC TRANSMISSION MARKET DURING FORECAST PERIOD 32
FIGURE 10 APAC HELD LARGEST SHARE OF HVDC TRANSMISSION MARKET IN 2017 33
FIGURE 11 HVDC TRANSMISSION MARKET IN APAC TO GROW AT HIGHEST CAGR DURING FORECAST PERIOD 34
FIGURE 12 LCC-BASED TECHNOLOGY TO LEAD HVDC TRANSMISSION MARKET DURING FORECAST PERIOD 34
FIGURE 13 MARKET FOR POINT-TO-POINT PROJECT TYPE TO SURPASS MARKET FOR BACK-TO-BACK BY 2018 35
FIGURE 14 CHINA HELD LARGEST SHARE OF HVDC TRANSMISSION MARKET IN 2017 36
FIGURE 15 RAPID ADOPTION RATE FOR UHVDC TECHNOLOGY IN CHINA EXPECTED TO SPUR GROWTH OF HVDC TRANSMISSION MARKET 37
FIGURE 16 COST COMPARISON BETWEEN HVDC AND HVAC GRIDS 38
FIGURE 17 VSC-BASED HVDC PROJECTS BY ABB LTD. AND SIEMENS AG, 2015–2017 39
FIGURE 18 MAJOR VALUE IS ADDED DURING PROJECT INSTALLATION & COMMISSIONING PHASE 43
FIGURE 19 HVDC TRANSMISSION MARKET, BY COMPONENT 47
FIGURE 20 CONVERTER STATIONS TO DOMINATE HVDC TRANSMISSION MARKET THROUGHOUT FORECAST PERIOD 47
FIGURE 21 HVDC MARKET, BY CONVERTER STATION 49
FIGURE 22 TYPES OF VALVES 50
FIGURE 23 TYPES OF HARMONIC FILTERS 52
FIGURE 24 HVDC TRANSMISSION MARKET: BY PROJECT TYPE 56
FIGURE 25 POINT-TO-POINT PROJECT TYPE TO HOLD LARGEST SHARE OF HVDC TRANSMISSION MARKET DURING FORECAST PERIOD 57
FIGURE 26 POINT-TO-POINT TRANSMISSION: SUB-SEGMENT 60
FIGURE 27 VSC-BASED TECHNOLOGY TO HOLD LARGEST SHARE OF HVDC TRANSMISSION MARKET FOR BACK-TO-BACK PROJECT TYPE DURING FORECAST PERIOD 65
FIGURE 28 HVDC TRANSMISSION MARKET: BY TECHNOLOGY 71
FIGURE 29 VSC-BASED TRANSMISSIONS TO GROW AT HIGHEST CAGR DURING FORECAST PERIOD 71
FIGURE 30 POINT-TO-POINT PROJECT TYPE TO HOLD LARGEST SHARE IN VSC-BASED TECHNOLOGY IN HVDC TRANSMISSION MARKET DURING FORECAST PERIOD 74
FIGURE 31 HVDC TRANSMISSION MARKET: BY APPLICATION 79
FIGURE 32 BULK POWER TRANSMISSION APPLICATIONS TO HOLD LARGEST SHARE OF HVDC TRANSMISSION MARKET DURING FORECAST PERIOD 79
FIGURE 33 POINT-TO-POINT PROJECTS FOR INFEED URBAN AREAS TO HOLD LARGEST SHARE OF HVDC TRANSMISSION MARKET DURING FORECAST PERIOD 84
FIGURE 34 HVDC TRANSMISSION MARKET: BY GEOGRAPHY 87
FIGURE 35 GEOGRAPHIC SNAPSHOT: HVDC TRANSMISSION MARKET 87
FIGURE 36 AMERICAS: HVDC TRANSMISSION MARKET SNAPSHOT 89
FIGURE 37 EUROPE: HVDC TRANSMISSION MARKET SNAPSHOT 94
FIGURE 38 APAC: HVDC TRANSMISSION MARKET SNAPSHOT 98
FIGURE 39 GROWTH STRATEGIES ADOPTED BY COMPANIES OVER PAST 4 YEARS
(2015–2018) 104
FIGURE 40 MARKET RANKING FOR HVDC TRANSMISSION MARKET, 2017 105
FIGURE 41 ABB: COMPANY SNAPSHOT 110
FIGURE 42 SIEMENS: COMPANY SNAPSHOT 114
FIGURE 43 GENERAL ELECTRIC: COMPANY SNAPSHOT 117
FIGURE 44 HITACHI: COMPANY SNAPSHOT 120
FIGURE 45 MITSUBISHI ELECTRIC: COMPANY SNAPSHOT 123
FIGURE 46 NEXANS: COMPANY SNAPSHOT 126
FIGURE 47 NKT A/S: COMPANY SNAPSHOT 128
FIGURE 48 PRYSMIAN GROUP: COMPANY SNAPSHOT 134


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[高電圧直流送電(HVDC)の世界市場予測(~2024年)] ( HVDC Transmission Market by Component (Converter Stations, Transmission Cables, and Others), Project Type (Point-to-Point, Back-to-Back, and Multi-Terminal), Technology (CCC, VSC, and lCC), Application, and Geography - Global Forecast to 2024 / SE 3052) についてEメールでお問い合わせ


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