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Global
High Performance Computing (HPC) Market Size, Status and Forecast 2019-2025


High-Voltage Direct Current (HVDC) transmission technology is a crucial technology holding potential to disrupt the power transmission landscape of the world. This technology is at the forefront of the emerging “smart grid” revolution and has emerged as an economically-viable solution for bulk and long-distance power transmission. Various countries are adopting HVDC, due to its cutting-edge features over HVAC, such as long-distance transmission, asynchronous transmission, ease in controlling the active power link, the possibility of bulk power transmission, and low loss (typically 30-50% less transmission loss than comparable alternating current overhead lines) in the transmission of power.

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The demand for HVDC transmission systems is estimated to increase in the coming years since they are the optimal solution for long distance transmission. The increasing demand for power for commercial, industrial, and household activities has increased the need for developing a diverse portfolio of energy generation mix. Additionally, it has also resulted in the supply of high voltage power through long transmission lines. In HVAC, the system can limit large voltage transfer due to its reactive power flow, whereas in HVDC, there is no limitation on large voltage transmission through cables. This makes it an optimal solution for transmitting large voltage over a long distance.

The emergence of hybrid HVDC circuit breakers is one of the latest trends contributing to gain traction in the HVDC transmission systems market during the next four years. The existing power transmission lines that use AC systems for the transmission of power are now converted into DC systems to increase power transmitting limits. The use of HVDC breakers can help in reducing the fault current to flow into the system. Moreover, it can also reduce the bottleneck in HVDC transmission grids and provide integration between renewable energy and HVDC transmission interconnections.

In 2018, the global High Voltage Direct Current (HVDC) Transmission Systems market size was xx million US$ and it is expected to reach xx million US$ by the end of 2025, with a CAGR of xx% during 2019-2025.

This report focuses on the global High Voltage Direct Current (HVDC) Transmission Systems status, future forecast, growth opportunity, key market and key players. The study objectives are to present the High Voltage Direct Current (HVDC) Transmission Systems development in United States, Europe and China.

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The key players covered in this study
ABB
GE Grid Solutions
Siemens
Nexans
NKT
Toshiba
NR Electric
Prysmian Group
American Semiconductor
TransGrid Solutions
ATCO Electric
LSIS

Market segment by Type, the product can be split into
Submarine HVDC Transmission System
HVDC Overhead Transmission System
HVDC Underground Transmission System

Market segment by Application, split into
Underground / Underwater Power Transmission
Asynchronous Grid Interconnection
Off-Shore Power Transmission
Multi Terminal (HVDC Networked Grids)
Island Connections
Off-Shore Wind Farms
Urban In-feed
Others

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Market segment by Regions/Countries, this report covers
United States
Europe
China
Japan
Southeast Asia
India
Central & South AmericaThe study objectives of this report are:
To analyze global High Voltage Direct Current (HVDC) Transmission Systems status, future forecast, growth opportunity, key market and key players.
To present the High Voltage Direct Current (HVDC) Transmission Systems development in United States, Europe and China.
To strategically profile the key players and comprehensively analyze their development plan and strategies.
To define, describe and forecast the market by product type, market and key regions.

In this study, the years considered to estimate the market size of High Voltage Direct Current (HVDC) Transmission Systems are as follows:
History Year: 2014-2018
Base Year: 2018
Estimated Year: 2019
Forecast Year 2019 to 2025
For the data information by region, company, type and application, 2018 is considered as the base year. Whenever data information was unavailable for the base year, the prior year has been considered.

Table of Contents

Chapter One: Report Overview

1.1 Study Scope

1.2 Key Market Segments

1.3 Players Covered

1.4 Market Analysis by Type

1.4.1 Global High Voltage Direct Current (HVDC) Transmission Systems Market Size Growth Rate by Type (2014-2025)

1.4.2 Submarine HVDC Transmission System

1.4.3 HVDC Overhead Transmission System

1.4.4 HVDC Underground Transmission System

1.5 Market by Application

1.5.1 Global High Voltage Direct Current (HVDC) Transmission Systems Market Share by Application (2014-2025)

1.5.2 Underground / Underwater Power Transmission

1.5.3 Asynchronous Grid Interconnection

1.5.4 Off-Shore Power Transmission

1.5.5 Multi Terminal (HVDC Networked Grids)

1.5.6 Island Connections

1.5.7 Off-Shore Wind Farms

1.5.8 Urban In-feed

1.5.9 Others

1.6 Study Objectives

1.7 Years Considered

Chapter Two: Global Growth Trends

2.1 High Voltage Direct Current (HVDC) Transmission Systems Market Size

2.2 High Voltage Direct Current (HVDC) Transmission Systems Growth Trends by Regions

2.2.1 High Voltage Direct Current (HVDC) Transmission Systems Market Size by Regions (2014-2025)

2.2.2 High Voltage Direct Current (HVDC) Transmission Systems Market Share by Regions (2014-2019)

2.3 Industry Trends

2.3.1 Market Top Trends

2.3.2 Market Drivers

2.3.3 Market Opportunities

Continued….

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