Global Substation Automation Market
市场规模(十亿美元)
CAGR : %
Forecast Period |
2022 –2029 |
Market Size (Base Year) |
USD 41,666.72 Billion |
Market Size (Forecast Year) |
USD 67,419.49 Billion |
CAGR |
|
Major Markets Players |
全球变电站自动化市场,按产品(硬件、软件、服务)、类型(输电变电站、配电变电站)、安装类型(新安装、改造安装)、最终用户行业(公用事业、钢铁、石油和天然气、采矿、运输)、组件(简易爆炸装置、通信网络、监控和数据采集)、通信(以太网、电力线通信、铜线通信、光纤通信)划分 – 行业趋势和预测(至 2029 年)
市场分析和规模
变电站自动化需求的增长是由于建设传统变电站的需求激增,数字技术在改善智能大都市电网效率方面的应用不断增加,对电动和冷血汽车的需求增加,以及对升级 IEC 61850 标准以解决变电站智能电子偏置之间的互操作性问题的关注度增加。
Data Bridge Market Research 分析,变电站自动化市场价值在 2021 年为 416.6672 亿美元,预计到 2029 年将达到 674.1949 亿美元,在 2022-2029 年预测期内的复合年增长率为 6.20%。
市场定义
变电站自动化是电力系统发电、输电和配电的重要组成部分。用于改变电压、频率等电力特性的偏置组合称为变电站。变电站用于从输电线接收高压电,并将电压降至适用位置,以便用于原始配电。
报告范围和市场细分
报告指标 |
细节 |
预测期 |
2022 至 2029 年 |
基准年 |
2021 |
历史岁月 |
2020(可定制至 2019 - 2014) |
定量单位 |
收入(百万美元)、销量(单位)、定价(美元) |
涵盖的领域 |
产品(硬件、软件、服务)、类型(输电变电站、配电变电站)、安装类型(新安装、改造安装)、最终用户行业(公用事业、钢铁、石油和天然气、采矿、运输)、组件(简易爆炸装置、通信网络、监控和数据采集系统)、通信(以太网、电力线通信、铜线通信、光纤通信) |
覆盖国家 |
北美洲的美国、加拿大和墨西哥、欧洲的德国、法国、英国、荷兰、瑞士、比利时、俄罗斯、意大利、西班牙、土耳其、欧洲其他地区、亚太地区 (APAC) 的中国、日本、印度、韩国、新加坡、马来西亚、澳大利亚、泰国、印度尼西亚、菲律宾、亚太地区 (APAC) 的其他地区、沙特阿拉伯、阿联酋、南非、埃及、以色列、中东和非洲 (MEA) 的其他地区、巴西、阿根廷和南美洲的其他地区。 |
涵盖的市场参与者 |
ARTECHE. (Spain),cgglobal. (Mumbai),Cisco Systems, Inc. (US),CrossCanyonEngineering.com (US),Eaton. (Ireland),Encore Networks. (US),General Electric (US),Hitachi Energy Ltd. (Switzerland),Honeywell International Inc. (US),Itron Inc. (US),M B Control & Systems Pvt Ltd. (West Bengal),NovaTech, LLC. (US),SAE IT-systems GmbH & Co. KG (Germany),Schweitzer Engineering Laboratories, Inc. (US),SELTA (US),VENSON ELECTRIC PVT. LTD. (Bangalore),Trilliant Holdings Inc. (US),TESLATECH INDIA PVT. LTD. (Kerala),SISCO, Inc. (UA) |
Market Opportunities |
|
Global Substation Automation Market Dynamics
This section deals with understanding the market drivers, opportunities, restraints and challenges. All of this is discussed in detail as below:
Drivers:
- Increasing investments in smart cities and smart grid infrastructure development projects
Substation automation helps reduce functional and conservation costs and increase factory productivity using enhanced technologies. It also ensures high performance, trust ability, and safety of electrical power network performing interlocking and smart cargo slipping functions. Smart grids can reduce energy losses during transmission and distribution, ameliorate trust ability and productivity, manage energy demand dashingly and bring-effectively. Considering all these benefits, heavy investments are being made for the development of smart grids across the world. For case, in May 2018, Natural Resource Canada blazoned an investment of USD for a coming- generation smart grid design. The grid design focuses on promoting the relinquishment of renewable sources of energy and the perpetration of technology to integrate new sources of clean energy without compromising the stability and trust ability of being grids. The government of Germany is making multiple enterprise to fully digitalize various operations in the railroads sector; for illustration, the automatic operation of trains on the mainline network using automated substations. According to the International Railway Journal, the government of Germany has invested USD 80 million in developing digital operations to increase the network capacity.
- Inclining new installations to augment market demand
The fast increase in the number of systems including renewable energy sources similar as solar and wind can be credited to the request's strong development eventuality. For illustration, Sun Tech Power Effects (China), a solar module manufacturer, intends to increase its investment in solar energy systems to fulfill China's rising energy demand as a result of rapid-fire urbanization. Several Chinese power enterprises, including State Grid Corporation of China, China Three Ravines Corporation, and State Power Investment Corporation, are working on 25 wind turbine contracts totaling about USD 586 billion to induce electricity.
Opportunities:
- Huge prospects for substation automation market due to increasing investments in renewable energy projects to meet growing energy demand
Solar and wind are presently the mainstream options in the power sector, with utmost countries generating further than 20 of their electricity using solar and wind energy sources. According to the International Energy Agency (IEA), the share of renewable sources in world electricity generation reached 25 in 2019. By 2050, renewable power will be suitable to give the bulk of global power demand, which would be roughly 86. Companies across the world are fastening on investing into sustainable energy structure than that of in fossil energies. According to the IEA’s World Energy Investment 2020report, total investment in renewable energy sources amounted to USD 259 billion and USD 226 billion in 2019 and 2020, independently. The decline in 2020 was important because of the profitable extremity due to the outbreak of the COVID-19 epidemic. Countries worldwide are trying to come up with new renewable systems for electricity generation. They're also investing in solar and wind systems to meet the growing demand for electricity and minimize the environmental impacts, along with investments in generating power using non-renewable sources at the same time.
Restrictions/ challenges:
- High initial installation cost of IEDs in substations
The original phase of automating the substation is capital-ferocious, which may restrain the growth of the global substation automation request. The adding use of advanced technologies analogous as microprocessor and service- acquainted architecture (SOA) and the rising demand to bed several IEDs in substations have increased the purchase costs of these substations. Also, an effective deployment of smart substations requires strong collaboration across customary organizational boundaries, significant process change, and rigorous governance. High investments for fruitful deployment of smart substations could add to the governments’ profitable burden. High functional and conservation costs after the deployment are also a big concern for avail providers.
This substation automation market report provides details of new recent developments, trade regulations, import-export analysis, production analysis, value chain optimization, market share, impact of domestic and localized market players, analyses opportunities in terms of emerging revenue pockets, changes in market regulations, strategic market growth analysis, market size, category market growths, application niches and dominance, product approvals, product launches, geographic expansions, technological innovations in the market. To gain more info on the substation automation market contact Data Bridge Market Research for an Analyst Brief, our team will help you take an informed market decision to achieve market growth.
COVID-19 Impact on Substation Automation Market
The substation automation request includes major League 1 and 2 suppliers like Hitachi ABB Power Grids, Siemens Energy, General Electric, Cisco, Schneider Electric, Eaton Corporation, Honeywell, Schweitzer Engineering Laboratories, NovaTech Automation, and CG Power and Industrial Results. These suppliers have their manufacturing installations spread across various countries across Asia Pacific, Europe, North America, and RoW. Substation automation products and results supplied by these companies are used by end- stoner diligence similar as serviceability, sword, canvas & gas, mining and transportation. Covid-19 not only impacted the operations of the substation automation request players, but also affected the businesses of companies from the below- mentioned diligence. Governments worldwide have cut down their spending on various areas to concentrate more on perfecting healthcare structure; thus, the demand for substation automation products and results from public grid systems is anticipated to shrink. Also, as marketable spaces in utmost corridor of the world would run at a significantly low capacity in 2020 and 2021; electricity consumption is anticipated to decline vastly, and electric serviceability might observe a detention in upgrading their grid structure. All these factors are anticipated to negatively impact the substation automation request.
Recent Developments
- In January 2021, SEL launched the new SEL-3350 Automation Controller designed for operations that bear midlevel I/ O and calculation. SEL-3350 can repel harsh surroundings in mileage substations, artificial control systems, and automation systems.
- In December 2020, Hitachi ABB Power Grids launched the new Remote Terminal Unit (RTU) 530 that extends the life of being power distribution networks and supports the migration to ultramodern technologies with enhanced security features, including secure communication, encryption, and security logging.
- 2020 年 11 月,西门子能源与科威特电力和水利部 (MEW) 签订合同,为 116 座高压变电站提供维护。这些变电站获得的先进维护服务将有助于最大限度地提高性能、降低运营成本,并为科威特电力部提供更好、更可靠的网络运营。
全球变电站自动化市场范围
变电站自动化 市场根据产品、类型、安装类型、最终用户行业、组件和通信进行细分。这些细分市场之间的增长将帮助您分析行业中增长微弱的细分市场,并为用户提供有价值的市场概览和市场洞察,帮助他们做出战略决策,确定核心市场应用。
奉献
- 硬件
- 软件
- 服务
类型
- 输电变电站
- 配电站
安装类型
- 新安装
- 改造设施
终端用户行业
- 实用工具
- 钢
- 石油和天然气
- 矿业
- 运输
成分
- 简易爆炸装置
- 通信网络
- SCADA 系统
沟通
- 以太网
- 电力线通信
- 铜线通信
- 光纤通信
变电站自动化市场区域分析/见解
对变电站自动化 市场进行了分析,并按国家、产品、类型、安装类型、最终用户行业、组件和通信提供了市场规模见解和趋势。
变电站自动化市场报告涵盖的国家 包括北美的美国、加拿大和墨西哥、欧洲的德国、法国、英国、荷兰、瑞士、比利时、俄罗斯、意大利、西班牙、土耳其、欧洲其他地区、亚太地区的中国、日本、印度、韩国、新加坡、马来西亚、澳大利亚、泰国、印度尼西亚、菲律宾、亚太地区的亚太地区其他地区、沙特阿拉伯、阿联酋、南非、埃及、以色列、中东和非洲其他地区、巴西、阿根廷和南美洲其他地区。
从地区来看,2020 年北美占据了电站自动化市场的主导地位。北美的主导地位得益于美国和加拿大政府为电网现代化而推出的许多资助计划。北美政府正在提供资金在能源和电力领域部署流行技术,这可能有助于该地区向更智能、更强大、更经济的电网系统过渡。老化的电网基础设施,加上政府对采用房地产电力技术的严格政策,促进了北美电站自动化市场的扩张。
过去几年,该地区进行了多项电网现代化改造。例如,2019 年 9 月,施耐德电气与全球最大的化学公司巴斯夫(德国)签订了合同,在其位于德克萨斯州博蒙特的新电站实施 EcoStruxure plus 顾问。EcoStruxure plus 顾问评估来自用户重要连接资产的实时信息,并应用高级分析来发现潜在威胁。
报告的国家部分还提供了影响市场当前和未来趋势的各个市场影响因素和市场监管变化。下游和上游价值链分析、技术趋势和波特五力分析、案例研究等数据点是用于预测各个国家市场情景的一些指标。此外,在提供国家数据的预测分析时,还考虑了全球品牌的存在和可用性以及它们因来自本地和国内品牌的大量或稀缺竞争而面临的挑战、国内关税和贸易路线的影响。
竞争格局和变电站自动化市场份额分析
变电站自动化 市场竞争格局按竞争对手提供详细信息。详细信息包括公司概况、公司财务状况、产生的收入、市场潜力、研发投资、新市场计划、全球影响力、生产基地和设施、生产能力、公司优势和劣势、产品发布、产品宽度和广度、应用主导地位。以上提供的数据点仅与公司对变电站自动化 市场的关注有关。
变电站自动化市场的一些主要参与者 包括:
- ARTECHE。(西班牙)
- cgglobal。(孟买)
- 思科系统公司(美国)
- CrossCanyonEngineering.com(美国)
- 伊顿。(爱尔兰)
- Encore Networks。(美国)
- 通用电气(美国)
- 日立能源有限公司(瑞士)
- 霍尼韦尔国际公司(美国)
- Itron Inc.(美国)
- MB Control & Systems Pvt Ltd.(西孟加拉邦)
- NovaTech, LLC.(美国)
- SAE IT-systems GmbH & Co. KG(德国)
- Schweitzer Engineering Laboratories, Inc.(美国)
- 塞尔塔(美国)
- VENSON ELECTRIC PVT. LTD.(班加罗尔)
- Trilliant Holdings Inc.(美国)
- 特斯拉技术印度有限公司有限公司(喀拉拉邦)
- SISCO 公司(UA)
- 通用电气
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研究方法
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