세계의 고전압 직류 전원 공급 장치 시장 (2023-2030) : 전압별 (1000-4000V, 4000V 이상), 용도별 (석유 및 가스, 공업), 지역별 (유럽, 아시아 태평양)

■ 영문 제목 : High Voltage Direct Current Power Supply Market Size, Share & Trends Analysis Report By Voltage (1,000-4000 V, >4,000 V), By Application (Oil & Gas, Industrial), By Region (Europe, Asia Pacific), And Segment Forecast, 2023 - 2030

Grand View Research 회사가 출판한 조사자료로, 코드는 GRV23MR101 입니다.■ 상품코드 : GRV23MR101
■ 조사/발행회사 : Grand View Research
■ 발행일 : 2023년 2월
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Grand View Research사의 본 조사 보고서는 글로벌 고전압 직류 전원 공급 장치 시장 규모가 2023년부터 2030년 사이에 CAGR 7.9% 증가하여, 2030년에는 59억 달러에 달할 것으로 전망하고 있습니다. 본 조사 자료는 글로벌 고전압 직류 전원 공급 장치 시장을 조사대상으로 하여, 조사 방법 및 범위, 개요, 시장 변동/동향/범위, 전압별 (1000V 이하, 1000 -4000V, 4000V 이상) 분석, 용도별 (의료, 공업, 석유 및 가스, 기타) 분석, 지역별 (북미, 유럽, 아시아 태평양, 중남미, 중동 및 아프리카) 분석, 경쟁 현황 등의 내용을 수록하고 있습니다. 덧붙여 본 보고서는 ABB, AHV, American Power Design (APD), Applied Kilovolts (Exelis), Excelitas Technologies Corp., General Electric, Glassman Europe Ltd., Hammatsu, Siemens AG, Toshiba Corp. ., XP Power (EMCO high voltage) 등의 기업 정보가 포함되어 있습니다.
・조사 방법 및 범위
・개요
・시장 변동/동향/범위
・글로벌 고전압 직류 전원 공급 장치 시장 규모 : 전압별
- 1000V 이하 고전압 직류 전원 공급 장치의 시장 규모
- 1000 -4000V 고전압 직류 전원 공급 장치의 시장 규모
- 4000V 이상 고전압 직류 전원 공급 장치의 시장 규모
・글로벌 고전압 직류 전원 공급 장치 시장 규모 : 용도별
- 의료에 사용되는 고전압 직류 전원 공급 장치의 시장 규모
- 산업에 사용되는 고전압 직류 전원 공급 장치의 시장 규모
- 석유 및 가스에 사용되는 고전압 직류 전원 공급 장치의 시장 규모
- 기타 용도에 사용되는 고전압 직류 전원 공급 장치의 시장 규모
・글로벌 고전압 직류 전원 공급 장치 시장 규모 : 지역별
- 북미의 고전압 직류 전원 공급 장치 시장 규모
- 유럽의 고전압 직류 전원 공급 장치 시장 규모
- 아시아 태평양의 고전압 직류 전원 공급 장치 시장 규모
- 중남미의 고전압 직류 전원 공급 장치 시장 규모
- 중동과 아프리카의 고전압 직류 전원 공급 장치 시장 규모
・경쟁 현황
■ 보고서 개요

High Voltage Direct Current Power Supply Market Growth & Trends

The global high voltage direct current power supply market size is expected to reach USD 5.9 billion by 2030, registering a CAGR of 7.9% from 2023 to 2030, according to a new study by Grand View Research Inc. These gadgets offer significant opportunities for industry expansion and interact with renewable or alternative energy sources like photovoltaics, fuel cells, and wind power with ease. Over the next seven years, product demand is expected to be driven by the advent of hybrid HVDC power supply circuit technology that makes use of Voltage Source Converters (VSC) and is compact in comparison to traditional design.

The industry has also seen the advancement of high power Insulated Gate Bipolar Transistors (IGBT), which has reduced the size of the HVDC power supply system and generated significant financial gains. The only feasible option now on the market that can be used with renewable energy sources is the HVDC power supply, which increases the dependability of an electrical system. These products’ effective bulk power transmission over long distances has greatly aided the development of direct-drive wind turbines, which promotes the long-term sustainability of the current energy infrastructure. The introduction of 4G and 5G networks causes constant growth in the industry as the need for power for telecom base station equipment rises.

Another factor driving the industry growth is 5G deployment, which will have modest growth between 2020 and 2022 as 5G investment steadily picks up worldwide, with major growth most likely to occur around 2025. Electric systems are also growing more complex as a result of a rise in feed-in nodes brought on by the increased grid expansion demand. As a result, there is a higher chance that there will be partial or complete blackouts, which happen when power flow exceeds design parameters. It is anticipated that the PGCIL, Global Wind Energy Council, and EUROPA would create advantageous public policies that will considerably aid the expansion of the offshore wind industry, thus supporting the industry

In India, transmission corridor requests from grid operators are increasing, especially in light of the advancement of renewable energies. Regeneration has been given priority by the government in this situation, and PGCIL was awarded the contract to construct an eco-friendly source for producing electricity from wind and solar power projects. Due to substantial investments made by industry players like Siemens and ABB, offshore HVDC power supply power transmission systems have been established in countries like Italy, Norway, and the Netherlands. Such initiatives undertaken for industry growth are expected to support the OEMs in expanding their overall share.

High Voltage Direct Current Power Supply Market Report Highlights

• The industrial segment accounted for the largest revenue share in 2022 and will expand further at a steady CAGR from 2023 to 2030

• This is mainly due to the rapid industrialization in developing nations like China & India and the high demand for reliable electricity supply

• The telecommunication application segment is anticipated to witness a healthy CAGR from 2023 to 2030

• The growth is attributable to the dependable and long-distance transmission with little loss provided by these items

• The extensive use of the internet has accelerated infrastructure construction, which could have a significant impact on the segment’s as well as overall industry growth

• The >4,000 V segment accounted for the largest revenue share in 2022 due to the various characteristics offered by these products, such as reduced output noise, development of an automated high-voltage test system, and improved sourcing precision, and measurement sensitivity

■ 보고서 목차

Table of Contents

Chapter 1. Methodology and Scope
1.1. Methodology Segmentation & Scope
1.2. Information Procurement
1.2.1. Purchased database
1.2.2. GVR’s internal database
1.2.3. Secondary sources & third-party perspectives
1.2.4. Primary research
1.3. Information Analysis
1.3.1. Data analysis models
1.4. Market Formulation & Data Visualization
1.5. Data Validation & Publishing
Chapter 2. Executive Summary
2.1. High Voltage Direct Current Power Supply Market – Industry Snapshot, 2018 – 2030
Chapter 3. High Voltage Direct Current Power Supply Market Variables, Trends & Scope
3.1. Market Size and Growth Prospects, 2018 – 2030
3.2. Industry Value Chain Analysis
3.3. Market Dynamics
3.3.1. Market Driver Analysis
3.3.2. Market Restraint/Challenge Analysis
3.3.3. Market Opportunity Analysis
3.4. Penetration & Growth Prospect Mapping (Key Opportunities Prioritized)
3.5. Business Environment Analysis Tools
3.5.1. Industry Analysis – Porter’s Five Forces Analysis
3.5.2. PEST Analysis
3.5.3. COVID-19 Impact Analysis
Chapter 4. HVDC Power Supply Voltage Outlook
4.1. <1000V 4.1.1. Market estimates and forecasts by region, 2018 - 2030 (USD Billion) 4.2. 1000-4000V 4.2.1. Market estimates and forecasts by region, 2018 - 2030 (USD Billion) 4.3. >4000V
4.3.1. Market estimates and forecasts by region, 2018 – 2030 (USD Billion)
Chapter 5. HVDC Power Supply Application Outlook
5.1. Telecommunication
5.1.1. Market estimates and forecasts by region, 2018 – 2030 (USD Billion)
5.2. Medical
5.2.1. Market estimates and forecasts by region, 2018 – 2030 (USD Billion)
5.3. Industrial
5.3.1. Market estimates and forecasts by region, 2018 – 2030 (USD Billion)
5.4. Oil & Gas
5.4.1. Market estimates and forecasts by region, 2018 – 2030 (USD Billion)
5.5. Others
5.5.1. Market estimates and forecasts by region, 2018 – 2030 (USD Billion)
Chapter 6. HVDC Power Supply Regional Outlook
6.1. North America
6.1.1. North America market by voltage, 2018 – 2030 (USD Billion)
6.1.2. North America market by application, 2018 – 2030 (USD Billion)
6.1.3. The U.S.
6.1.3.1. The U.S. market by voltage, 2018 – 2030 (USD Billion)
6.1.3.2. The U.S. market by application, 2018 – 2030 (USD Billion)
6.1.4. Canada
6.1.4.1. Canada market by voltage, 2018 – 2030 (USD Billion)
6.1.4.2. Canada market by application, 2018 – 2030 (USD Billion)
6.2. Europe
6.2.1. Europe market by voltage, 2018 – 2030 (USD Billion)
6.2.2. Europe market by application, 2018 – 2030 (USD Billion)
6.2.3. Germany
6.2.3.1. Germany market by voltage, 2018 – 2030 (USD Billion)
6.2.3.2. Germany market by application, 2018 – 2030 (USD Billion)
6.2.4. U.K.
6.2.4.1. The U.K. market by voltage, 2018 – 2030 (USD Billion)
6.2.4.2. The U.K. market by application, 2018 – 2030 (USD Billion)
6.2.5. France
6.2.5.1. France market by voltage, 2018 – 2030 (USD Billion)
6.2.5.2. France market by application, 2018 – 2030 (USD Billion)
6.2.6. Rest of Europe
6.2.6.1. Rest of Europe market by voltage, 2018 – 2030 (USD Billion)
6.2.6.2. Rest of Europe market by application, 2018 – 2030 (USD Billion)
6.3. Asia Pacific
6.3.1. Asia Pacific market by voltage, 2018 – 2030 (USD Billion)
6.3.2. Asia Pacific market by application, 2018 – 2030 (USD Billion)
6.3.3. China
6.3.3.1. China market by voltage, 2018 – 2030 (USD Billion)
6.3.3.2. China market by application, 2018 – 2030 (USD Billion)
6.3.4. India
6.3.4.1. India market by voltage, 2018 – 2030 (USD Billion)
6.3.4.2. India market by application, 2018 – 2030 (USD Billion)
6.3.5. Japan
6.3.5.1. Japan market by voltage, 2018 – 2030 (USD Billion)
6.3.5.2. Japan market by application, 2018 – 2030 (USD Billion)
6.3.6. Rest of Asia Pacific
6.3.6.1. Rest of Asia Pacific market by voltage, 2018 – 2030 (USD Billion)
6.3.6.2. Rest of Asia Pacific market by application, 2018 – 2030 (USD Billion)
6.4. Latin America
6.4.1. Latin America market by voltage, 2018 – 2030 (USD Billion)
6.4.2. Latin America market by application, 2018 – 2030 (USD Billion)
6.4.3. Brazil
6.4.3.1. Brazil market by voltage, 2018 – 2030 (USD Billion)
6.4.3.2. Brazil market by application, 2018 – 2030 (USD Billion)
6.4. Mexico
6.4.4.1. Brazil market by voltage, 2018 – 2030 (USD Billion)
6.4.4.2. Brazil market by application, 2018 – 2030 (USD Billion)
6.4.5. Rest of Latin America
6.4.5.1. Rest of Latin America market by voltage, 2018 – 2030 (USD Billion)
6.4.5.2. Rest of Latin America market by application, 2018 – 2030 (USD Billion)
6.5. Middle East & Africa
6.5.1. Middle East & Africa market by voltage, 2018 – 2030 (USD Billion)
6.5.2. Middle East & Africa market by application, 2018 – 2030 (USD Billion)
Chapter 7. Competitive Landscape
7.1. ABB
7.1.1. Revenue Analysis
7.1.2. Product Benchmarking
7.1.3. Strategic Development
7.2. AHV
7.2.1. Revenue Analysis
7.2.2. Product Benchmarking
7.2.3. Strategic Development
7.3. American Power Design (APD)
7.3.1. Revenue Analysis
7.3.2. Product Benchmarking
7.3.3. Strategic Development
7.4. Applied Kilovolts (Exelis)
7.4.1. Revenue Analysis
7.4.2. Product Benchmarking
7.4.3. Strategic Development
7.5. Excelitas Technologies Corp.
7.5.1. Revenue Analysis
7.5.2. Product Benchmarking
7.5.3. Strategic Development
7.6. General Electric
7.6.1. Revenue Analysis
7.6.2. Product Benchmarking
7.6.3. Strategic Development
7.7. Glassman Europe Ltd.
7.7.1. Revenue Analysis
7.7.2. Product Benchmarking
7.7.3. Strategic Development
7.8. Hamamatsu
7.8.1. Revenue Analysis
7.8.2. Product Benchmarking
7.8.3. Strategic Development
7.9. Siemens AG
7.9.1. Revenue Analysis
7.9.2. Product Benchmarking
7.9.3. Strategic Development
7.10. Toshiba Corp.
7.10.1. Revenue Analysis
7.10.2. Product Benchmarking
7.10.3. Strategic Development
7.11. XP Power (EMCO high voltage)
7.11.1. Revenue Analysis
7.11.2. Product Benchmarking
7.11.3. Strategic Development

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