HVDC Transmission Market by Component (Convertor Stations, Transmission Cables, and Others), Technology (CCC, VSC, LCC, and UHVDC), Project Type, Power Rating, Application, and Geography - Global Forecast to 2023

HVDC送電の世界市場予測(~2023年):変換所、送電ケーブル

◆タイトル:HVDC Transmission Market by Component (Convertor Stations, Transmission Cables, and Others), Technology (CCC, VSC, LCC, and UHVDC), Project Type, Power Rating, Application, and Geography - Global Forecast to 2023
◆商品コード:MAM-SE3052
◆調査・発行会社:MarketsandMarkets
◆発行日:2017年6月29日
◆ページ数:182
◆レポート形式:PDF / 英語
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【レポートの概要】

当調査レポートでは、HVDC送電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、産業動向、バリューチェーン分析、市場シェア分析、構成要素別分析、技術別分析、電力別分析、用途別分析、HVDC送電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。

The HVDC transmission market was valued at USD 6.79 Billion in 2016 and is expected to reach USD 11.52 Billion by 2023, at a CAGR of 7.31% during the forecast period. Many countries are focusing on innovations and expansions in the existing projects. This factor would increase the demand for HVDC transmission systems in the coming years.
The HVDC transmission market has been segmented on the basis of technology into capacitor commutated converter (CCC), voltage sourced converter (VSC), line commutate converter (LCC), and ultra-high voltage direct current (UHVDC). The market for VSC technology is expected to grow at a higher CAGR during the forecast period. VSC, along with the offshore platform size, is a smaller and less expensive solution for HVDC transmission systems. Moreover, VSC requires lesser filters than LCC, thereby reducing the size of the system. Due to these advantages, the market for VSC technology is expected to grow faster than that of the LCC technology.

The HVDC transmission market has been segmented on the basis of project type, which includes point-to-point transmission, back-to-back stations, and multi-terminal systems. The European countries’ increasing focus on power generation from wind energy would further increase the market share for the multi-terminal system.

Moreover, the market is segmented on the basis of application into underground power transmission, asynchronous grid interconnection, and offshore power transmission. Among all the applications, offshore power transmission is expected to grow at the highest CAGR during the forecast period. The increasing demand for power and efficient power supply is the main reason behind the growth of the market for offshore power transmission. The high power transmission from offshore plants to the load centers needs an efficient and reliable system. The connecting wind farms have also been a paramount factor driving the adoption of HVDC transmission systems at offshore plants located distantly and which generate a high voltage constantly. Furthermore, the market is segmented on the basis of power rating, which includes below 500 MW, 5001–1000 MW, 1001–1500 MW, 1501–2000 MW, and above 2001 MW.

On the basis of geography, the HVDC transmission market has been segmented into the Americas, Europe, Asia Pacific (APAC), and Rest of the World (RoW). The HVDC transmission market in APAC is expected to grow at the highest CAGR during the forecast period. The market growth can be attributed to several initiatives by the governments in APAC. Moreover, the presence of major players in the HVDC transmission ecosystem results in the increasing adoption of HVDC transmission systems in APAC. However, high initial cost of grid installation is a major restraint for the HVDC transmission market.

Key players in this market focus on organic strategy such as product launches and expansions to increase their revenue. In April 2017, ABB Ltd. (Switzerland) upgraded its high-voltage direct current (HVDC) light technology. The next level of the company’s HVDC light would help in doubling the power capacity to 3,000 megawatts (MW). Moreover, the design enhancements would bring a major change in the compactness of the transmission system, with a potential to deliver 350 percent more power per square meter of space used.

【レポートの目次】

1 Introduction (Page No. – 15)
1.1 Objectives of the Study
1.2 Market Definition
1.3 Study Scope
1.3.1 Markets Covered
1.3.2 HVDC Transmission Market, By Region
1.3.3 Years Considered for the Study
1.4 Currency
1.5 Limitations
1.6 Stakeholders

2 Research Methodology (Page No. – 19)
2.1 Research Data
2.1.1 Secondary Data
2.1.1.1 Major Secondary Sources
2.1.1.2 Key Data From Secondary Sources
2.1.2 Primary Data
2.1.2.1 Primary Interviews With Experts
2.1.2.2 Breakdown of Primaries
2.1.2.3 Key Data From Primary Sources
2.2 Secondary and Primary Research
2.2.1 Key Industry Insights
2.3 Market Size Estimation
2.3.1 Bottom-Up Approach
2.3.1.1 Approach for Capturing the Market Share By Bottom-Up Analysis (Demand Side)
2.3.1.2 Approach for Capturing the Market Share With the Help of Various Players in the Value Chain of the HVDC Transmission Market
2.3.2 Top-Down Approach
2.3.2.1 Approach for Capturing the Market Share By Top-Down Analysis (Supply Side)
2.4 Market Breakdown and Data Triangulation
2.5 Research Assumptions

3 Executive Summary (Page No. – 30)

4 Premium Insights (Page No. – 36)
4.1 Growing Demand for VSC Technology in HVDC Transmission Market
4.2 Overall HVDC Transmission Market, By Power Rating
4.3 APAC Held Largest Share of Overall HVDC Transmission Market in 2017
4.4 China Dominated HVDC Transmission Market in APAC in 2017
4.5 Offshore Power Transmission Application in HVDC Transmission Market

5 Market Overview (Page No. – 40)
5.1 Introduction
5.2 Market Dynamics
5.2.1 Drivers
5.2.1.1 Increasing Demand for Cost-Effective Solutions for Long Distance Power Transmission
5.2.1.2 Integration of VSC Technology Across Grids Enable System Security
5.2.1.3 Liberalization in the Energy Policies in Europe
5.2.1.4 Decommissioning of Nuclear and Coal Power Plants
5.2.2 Restraints
5.2.2.1 Rise in the Cost of Components Affects the Grid Installations
5.2.2.2 High Initial Investment in Grid Infrastructure
5.2.3 Opportunities
5.2.3.1 Favorable Government Policies Bring Opportunities for Growth in Offshore Wind Transmission Projects
5.2.3.2 Rapid Adoption Rate for UHVDC Technology in China
5.2.4 Challenges
5.2.4.1 Maintaining an Uniformity in the Standards of HVDC Transmission Equipment and Systems
5.2.4.2 Controlling Congestion and Instability in HVDC Systems

6 Industry Trends (Page No. – 48)
6.1 Value Chain Analysis
6.2 Regulatory Standards

7 HVDC Transmission Market, By Component (Page No. – 51)
7.1 Introduction
7.2 Converter Stations
7.2.1 Valves
7.2.1.1 Thyristor Valves
7.2.1.2 VSC Valves
7.2.2 Transformers
7.2.3 Harmonic Filters
7.2.3.1 Ac Filters
7.2.3.2 Dc Filters
7.2.4 Circuit Breakers
7.2.5 Reactors
7.2.6 Surge Arresters
7.3 Transmission Cables
7.3.1 HVDC Submarine Cables
7.4 Others

8 HVDC Transmission Market, By Technology (Page No. – 59)
8.1 Introduction
8.2 Capacitor Commutated Converter (CCC) Based
8.3 Voltage Source Converter (VSC) Based
8.4 Line Commutated Converter (LCC) Based (Thyristor Based)
8.5 UHVDC

9 HVDC Transmission Market, By Project Type (Page No. – 68)
9.1 Introduction
9.2 Point-To-Point Transmission
9.2.1 Monopolar
9.2.2 Bipolar
9.3 Back-To-Back Stations
9.4 Multi-Terminal Systems
9.4.1 Series Multi-Terminal Systems
9.4.2 Parallel Multi-Terminal Systems

10 HVDC Transmission Market, By Power Rating (Page No. – 83)
10.1 Introduction
10.2 Below 500 MW
10.3 501–1000 MW
10.4 1001–1500 MW
10.5 1501–2000 MW
10.6 Above 2001 MW

11 HVDC Transmission Market, By Application (Page No. – 88)
11.1 Introduction
11.2 Underground Power Transmission
11.2.1 Islands
11.2.2 Urban Areas
11.2.3 Industrial Locations
11.3 Asynchronous Grid Interconnection
11.4 Off-Shore Power Transmission
11.4.1 Wind Projects
11.4.2 Oil & Gas

12 Geographic Analysis (Page No. – 99)
12.1 Introduction
12.2 Americas
12.2.1 HVDC Expected to Be the Backbone for Power Transmission in the Americas in Future
12.2.2 North America
12.2.2.1 Increasing Demand for Renewable Energy Brings Growth Opportunities in North America
12.2.2.2 Us
12.2.2.2.1 Growing Demand for HVDC Transmission Projects
12.2.2.3 Canada
12.2.2.3.1 Implementation of HVDC Interconnections in the Canadian National Electrical Grid
12.2.2.4 Mexico
12.2.2.4.1 Development of Power Grids to Meet the Growing Demand for Electricity
12.2.3 South America
12.2.3.1 Stringent Regulations for Generating Electricity Using Renewables
12.2.3.2 Brazil
12.2.3.2.1 Huge Potential for HVDC Transmission Projects
12.2.3.3 Rest of South America
12.3 Europe
12.3.1 Deployment of HVDC Transmission Projects Using Renewables
12.3.2 UK
12.3.2.1 Reduction in Greenhouse Gas Emission to Improve the Transmission and Distribution Network
12.3.3 Germany
12.3.3.1 Accelerated Shift From Nuclear Power and Fossil Fuels to Renewables
12.3.4 Russia
12.3.4.1 Potential Growth for HVDC Projects in the Country
12.3.5 France
12.3.5.1 Increasing Adoption of HVDC Technology for Long-Distance Power Transmissions
12.3.6 Rest of Europe
12.4 APAC
12.4.1 Capacity Addition Across the Existing Power Infrastructure to Drive HVDC Transmission Market in APAC
12.4.2 China
12.4.2.1 Policy Structure Attracting More Investments for HVDC Projects
12.4.3 Japan
12.4.3.1 Investments By Leading Players Driving the Growth of the HVDC Transmission Market
12.4.4 India
12.4.4.1 Government Initiatives to Facilitate Economic Benefits and Energy Security
12.4.5 Australia
12.4.5.1 Government Policies for the Development and Commercialization of Solar Energy Resources
12.4.6 Rest of APAC
12.5 RoW
12.5.1 Development in Power Infrastructure to Meets the Increasing Demands for Power
12.5.2 Middle East
12.5.2.1 Emerging Market for HVDC Technology
12.5.3 Africa
12.5.3.1 Upcoming HVDC Projects Contributing to the Overall Growth of the Country

13 Competitive Landscape (Page No. – 123)
13.1 Introduction
13.2 Market Ranking Analysis: HVDC Transmission Market
13.3 HVDC Transmission Market (Global) Competitive Leadership Mapping, 2017
13.3.1 Visionary Leaders
13.3.2 Dynamic Differentiators
13.3.3 Innovators
13.3.4 Emerging Companies
13.4 HVDC Transmission Market: Strength of Product Portfolio (25 Companies)
13.5 HVDC Transmission Market: Business Strategy Excellence (25 Companies)

*Top 25 Companies Analyzed for This Study are – ABB Ltd., Siemens AG, General Electric, Toshiba Corporation, Mitsubishi Electric Corporation, Nexans SA, NKT A/S, Hitachi Ltd., Schneider Electric, NR Electric Co., Ltd., Prysmian Group, Sumitomo Electric Industries, Ltd., C-EPRI Electric Power Engineering Co., Ltd, Atco Electric Ltd, American Superconductor Corp., Ls Industrial Systems, Transgrid Solutions Inc., Europacable, Preferred Power Solutions, Double Engineering Company, Emco Limited, Eltek, HVDC Technology Ltd., Epcos, Origin Electric Co., Ltd.

14 Company Profiles (Page No. – 129)
(Business Overview, Products Offered & Services Strategies, Key Insights, Recent Developments, MnM View)*
14.1 ABB Ltd.
14.2 Siemens AG
14.3 General Electric
14.4 Toshiba Corporation
14.5 Mitsubishi Electric Corporation
14.6 Nexans SA
14.7 NKT A/S
14.8 Hitachi Ltd.
14.9 Schneider Electric
14.10 NR Electric Co., Ltd.
14.11 Prysmian Group
14.12 C-EPRI Electric Power Engineering Co., Ltd
14.13 Key Innovators and Start-Ups
14.13.1 American Superconductor Corp.
14.13.2 Transgrid Solutions Inc.
14.13.3 Atco Electric Ltd.
14.13.4 Double Engineering Company
14.13.5 HVDC Technologies Ltd.

*Details on Business Overview, Products Offered & Services Strategies, Key Insights, Recent Developments, MnM View Might Not Be Captured in Case of Unlisted Companies.

15 Appendix (Page No. – 171)
15.1 Insights of Industry Experts
15.2 Discussion Guide
15.3 Knowledge Store: Marketsandmarkets’ Subscription Portal
15.4 Introducing RT: Real-Time Market Intelligence
15.5 Available Customizations
15.6 Related Reports
15.7 Author Details

List of Tables (63 Tables)

Table 1 Function & Stakeholders in HVDC Transmission Value Chain
Table 2 HVDC Transmission Market: Regulatory Standards
Table 3 HVDC Transmission Market, By Component, 2014–2023 (USD Billion)
Table 4 HVDC Transmission Market, By Converter Station, 2014–2023 (USD Billion)
Table 5 HVDC Transmission Market for Components, By Valve Type, 2014–2023 (USD Billion)
Table 6 HVDC Transmission Market, By Technology, 2014–2023 (USD Billion)
Table 7 HVDC Market for VSC-Based Technology, By Project Type, 2014–2023 (USD Billion)
Table 8 VSC-Based Technology Market for Point-To-Point, By Type, 2014–2023 (USD Billion)
Table 9 HVDC Market for LCC-Based Technology, By Project Type, 2014–2023 (USD Billion)
Table 10 HVDC LCC-Based Technology Market for Point-To-Point, By Type, 2014–2023 (USD Billion)
Table 11 HVDC Market for UHVDC, By Project Type, 2014–2023 (USD Billion)
Table 12 UHVDC Market for Point-To-Point, By Type, 2014–2023 (USD Billion)
Table 13 HVDC Transmission Market, By Project Type, 2014–2023 (USD Billion)
Table 14 HVDC Transmission Market for Point-To-Point Project Type, By Technology, 2014–2023 (USD Billion)
Table 15 HVDC Transmission Market for Point-To-Point Project Type, By Application, 2014–2023 (USD Billion)
Table 16 HVDC Transmission Market for Point-To-Point Project Type, By Offshore Power Transmission Type, 2014–2023 (USD Billion)
Table 17 HVDC Transmission Market for Point-To-Point Project Type, By Region, 2014–2023 (USD Billion)
Table 18 HVDC Transmission Market, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 19 HVDC Transmission Market for Monopolar Point-To-Point Project Type, By Technology, 2014–2023 (USD Billion)
Table 20 HVDC Transmission Market for Monopolar Point-To-Point Project Type, By Application, 2014–2023 (USD Billion)
Table 21 HVDC Transmission Market for Monopolar Point-To-Point Project Type, By Offshore Power Transmission Type, 2014–2023 (USD Billion)
Table 22 HVDC Transmission Market for Monopolar Point-To-Point Project Type, By Region, 2014–2023 (USD Billion)
Table 23 HVDC Transmission Market for Bipolar Point-To-Point Project Type, By Technology, 2014–2023 (USD Billion)
Table 24 HVDC Transmission Market for Bipolar Point-To-Point Project Type, By Application, 2014–2023 (USD Billion)
Table 25 HVDC Transmission Market for Bipolar Point-To-Point Project Type, By Offshore Power Transmission Type, 2014–2023 (USD Billion)
Table 26 HVDC Transmission Market for Bipolar Point-To-Point Project Type, By Region, 2014–2023 (USD Billion)
Table 27 HVDC Transmission Market for Back-To-Back Project Type, By Technology, 2014–2023 (USD Billion)
Table 28 HVDC Transmission Market for Back-To-Back Project Type, By Application, 2014–2023 (USD Billion)
Table 29 HVDC Transmission Market for Back-To-Back Project Type, By Offshore Power Transmission, 2014–2023 (USD Billion)
Table 30 HVDC Transmission Market for Back-To-Back Project Type, By Region, 2014–2023 (USD Billion)
Table 31 HVDC Transmission Market for Multi-Terminal Project Type, By Technology, 2014–2023 (USD Billion)
Table 32 HVDC Transmission Market for Multi-Terminal Project Type, By Application, 2014–2023 (USD Billion)
Table 33 HVDC Transmission Market for Multi-Terminal Project Type, By Offshore Power Transmission Type, 2014–2023 (USD Billion)
Table 34 HVDC Transmission Market for Multi-Terminal Project Type, By Region, 2014–2023 (USD Billion)
Table 35 HVDC Transmission Market, By Power Rating, 2014–2023 (USD Billion)
Table 36 HVDC Transmission Market, By Application, 2014–2023 (USD Billion)
Table 37 HVDC Transmission Market for Underground Power Transmission, By Project Type, 2014–2023 (USD Billion)
Table 38 HVDC Transmission Market for Underground Power Transmission, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 39 HVDC Transmission Market for Asynchronous Grid Interconnection, By Project Type, 2014–2023 (USD Billion)
Table 40 HVDC Transmission Market for Asynchronous Grid Interconnection, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 41 HVDC Transmission Market for Offshore Power Transmission, By Project Type, 2014–2023 (USD Billion)
Table 42 HVDC Transmission Market for Offshore Power Transmission, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 43 HVDC Transmission Market for Offshore Power Transmission, By Type 2014–2023 (USD Billion)
Table 44 HVDC Transmission Market for Off-Shore Power Transmission for Wind Projects, By Project Type, 2014–2023 (USD Billion)
Table 45 Market for Wind Projects, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 46 Market for Oil & Gas, By Project Type, 2014–2023 (USD Billion)
Table 47 HVDC Transmission Market for Oil & Gas, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 48 HVDC Transmission Market, By Region, 2014–2023 (USD Billion)
Table 49 HVDC Transmission Market in Americas, By Project Type, 2014–2023 (USD Billion)
Table 50 HVDC Transmission Market in Americas, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 51 HVDC Transmission Market in Americas, By Region, 2014–2023 (USD Billion)
Table 52 HVDC Transmission Market in North America, By Country, 2014–2023 (USD Billion)
Table 53 HVDC Transmission Market in South America, By Country, 2014–2023 (USD Billion)
Table 54 HVDC Transmission Market in Europe, By Project Type, 2014–2023 (USD Billion)
Table 55 HVDC Transmission Market in Europe, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 56 HVDC Transmission Market in Europe, By Country, 2014–2023 (USD Billion)
Table 57 HVDC Transmission Market in APAC, By Project Type, 2014–2023 (USD Billion)
Table 58 HVDC Transmission Market in APAC, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 59 HVDC Transmission Market in APAC, By Country, 2014–2023 (USD Billion)
Table 60 HVDC Transmission Market in RoW, By Project Type, 2014–2023 (USD Billion)
Table 61 HVDC Transmission Market in RoW, By Point-To-Point Project Type, 2014–2023 (USD Billion)
Table 62 HVDC Transmission Market in RoW, By Region, 2014–2023 (USD Billion)
Table 63 Market Ranking of the Top 5 Players in HVDC Transmission Market, 2016



List of Figures (60 Figures)

Figure 1 HVDC Transmission Market: Research Design
Figure 2 Market Size Estimation Methodology: Bottom-Up Approach
Figure 3 Major Players in Value Chain of HVDC Transmission Market
Figure 4 Market Size Estimation Methodology: Top-Down Approach
Figure 5 Data Triangulation
Figure 6 Point-To-Point Project Type Expected to Hold the Largest Share of HVDC Transmission Market During Forecast Period
Figure 7 Offshore Power Transmission Expected to Grow at the Highest CAGR Between 2017 and 2023
Figure 8 Above 2000 MW Power Rating for HVDC Transmission Expected to Grow at the Highest CAGR Between 2017 and 2023
Figure 9 VSC-Based HVDC Technology Expected to Grow at the Highest CAGR During Forecast Period
Figure 10 HVDC Transmission Market in APAC Expected to Grow at the Highest CAGR Between 2017 and 2023
Figure 11 Attractive Market Opportunities in HVDC Transmission Market During the Forecast Period
Figure 12 HVDC Transmission Market for >2000 MW Power Rating is Expected to Grow at the Highest CAGR During Forecast Period
Figure 13 India Expected to Exhibit the Highest CAGR During Forecast Period
Figure 14 Back-To-Back Transmission Held Largest Share of HVDC Transmission Market in APAC in 2017
Figure 15 Wind Projects for Offshore HVDC Transmission Estimated to Grow at A Higher CAGR Between 2017 and 2023
Figure 16 Rapid Adoption Rate for UHVDC Technology in China Expected to Spur Growth of HVDC Transmission Market
Figure 17 Cost Comparison Between HVDC and HVAC Grids
Figure 18 VSC-Based HVDC Projects By ABB Ltd. & Siemens AG, 2015–2017
Figure 19 Major Value Added During Project Installation & Commissioning Phase
Figure 20 HVDC Transmission Market, By Component
Figure 21 HVDC Market, By Converter Station
Figure 22 Types of Valves
Figure 23 Types of Harmonic Filters
Figure 24 HVDC Transmission Market, By Technology
Figure 25 HVDC Market for CCC-Based Technology, By Project Type, 2014–2023 (USD Billion)
Figure 26 Multi-Terminal Project Type Expected to Grow at the Highest CAGR in the HVDC Transmission Market for LCC-Based Technology
Figure 27 HVDC Transmission Market, By Project Type
Figure 28 Point-To-Point Transmission, By Type
Figure 29 APAC Expected to Witness the Highest CAGR in the HVDC Transmission Market for Monopolar Point-To-Point Project Type
Figure 30 Wind Projects Offshore Power Transmission Expected to Grow at A Higher CAGR in the HVDC Transmission Market for Back-To-Back Project Type
Figure 31 Multi-Terminal Systems, By Type
Figure 32 HVDC Transmission Market, By Power Rating
Figure 33 HVDC Transmission Market, By Application
Figure 34 HVDC Transmission Market: Underground Power Transmission Application
Figure 35 Wind Projects Expected to Grow at A Higher CAGR in the HVDC Transmission Market for Offshore Power Transmission Application
Figure 36 HVDC Transmission Market: Off-Shore Power Transmission Application
Figure 37 HVDC Transmission Market Segmentation: By Geography
Figure 38 Geographic Snapshot: HVDC Transmission Market in APAC Expected to Grow at the Highest CAGR During the Forecast Period
Figure 39 HVDC Transmission Market in Brazil Estimated to Grow at the Highest CAGR Between 2017 and 2023
Figure 40 Segmentation: the Americas
Figure 41 Americas: HVDC Transmission Market Snapshot
Figure 42 Segmentation: North America
Figure 43 Segmentation: South America
Figure 44 Segmentation: Europe
Figure 45 Europe: HVDC Transmission Market Snapshot
Figure 46 Segmentation: APAC
Figure 47 APAC: HVDC Transmission Market Snapshot
Figure 48 Segmentation: RoW
Figure 49 Key Growth Strategies Adopted By Top Companies, 2014–2017
Figure 50 Competitive Leadership Mapping
Figure 51 ABB Ltd.: Company Snapshot
Figure 52 Siemens AG: Company Snapshot
Figure 53 General Electric: Company Snapshot
Figure 54 Toshiba Corporation: Company Snapshot
Figure 55 Mitsubishi Electric Corporation: Company Snapshot
Figure 56 Nexans SA: Company Snapshot
Figure 57 NKT A/S: Company Snapshot
Figure 58 Hitachi, Ltd.: Company Snapshot
Figure 59 Schneider Electric: Company Snapshot
Figure 60 Prysmian Group: Company Snapshot

【レポートのキーワード】

HVDC送電、変換所、送電ケーブル、電力、送電技術

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