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市场调查报告书
商品编码
1886922
同步相量仪市场规模、占有率、成长及全球产业分析:依类型、应用和地区划分的洞察,以及2024年至2032年的预测Synchrophasor Market Size, Share, Growth and Global Industry Analysis By Type & Application, Regional Insights and Forecast to 2024-2032 |
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随着电力公司加速向现代化、数位化和高弹性电网基础设施转型,全球同步相量仪市场正经历显着的成长动能。报告显示,该市场预计在2024年达到2.8242亿美元,到2025年增长至3.8亿美元,到2032年达到6.4942亿美元,复合年增长率高达11.66%。 2024年,北美市场将以37.46%的市占率领先,这主要得益于智慧电网的高普及率、早期PMU(相量测量单元)应用计画以及强有力的监管支持。
同步相量仪(同步相量仪)技术能够即时测量整个电网的电气参数。这些测量资料由相量测量单元 (PMU) 收集,并传输至相量资料集中器 (PDC) 进行广域分析和控制。这种高精度、时间同步的资料流使电力公司能够识别故障、检测不稳定性,并提高大范围区域的态势感知能力,从而提升运作效率和系统可靠性。随着世界向智慧电网转型,PMU 已成为维护电网韧性、推动再生能源併网以及预防重大停电事故的关键组件。
市场动态
市场驱动因素-经济效益推动应用
同步器技术的应用可带来显着的运作和经济效益。电力公司受益于运作和维护成本的降低、资产利用率的提高以及系统性能可视性的增强。透过对电压、频率和相位角进行持续监测,同步器可显着降低停电风险并优化电网性能。这些效率提升可转化为公用事业公司和终端用户的长期成本节约,从而促进区域和国家电网的更广泛应用。
市场驱动因素-电网现代化推动PMU部署
老化的电网基础设施是全球面临的一项重大挑战。许多国家都面临设备故障、停电和再生能源併网能力有限等挑战。同步相位测量装置透过为系统营运商提供必要的即时数据来应对这些挑战,以便在电网中断期间做出准确的决策。 PMU能够支援再生能源併网、稳定电网运作并减少损耗,使其成为电网现代化工作的重要组成部分。
市场限制因素-初始成本高
儘管同步相位测量系统具有诸多优势,但高昂的安装和整合成本仍然是一个重大障碍。同步相位测量系统需要PMU、PDC、储能设备、软体、通讯网路、网路安全层和熟练的专业人员。这增加了初始成本,给公用事业公司带来了沉重的负担,尤其是在发展中国家。然而,随着政府支持力度的加大和技术的进步,预计未来成本将会下降。
市场机会 - 电网基础设施数位化
全球清洁能源转型正在加速电网数位化。随着再生能源渗透率的提高,电力系统面临日益加剧的波动性,因此需要先进的预测、监控和控制工具。国际能源总署 (IEA) 指出,到 2050 年,数位技术可望将全球电网投资减少 1.8 兆美元。随着公用事业公司努力实现净零排放目标,基于 PMU 的广域监测系统 (WAMS) 的投资预计将显着增加。
市场挑战 - 网路安全风险
同步相位测量系统会产生敏感的即时数据,因此网路安全是一个主要问题。必须从 PMU 到 PDC 和控制中心,对资料的机密性、完整性和可用性进行端对端保护。网路威胁,例如资料篡改和拒绝服务攻击,会损害系统可靠性,因此需要强大的保护框架。
市场趋势
一个关键趋势是同步相位测量系统日益获得国际认可和认证。例如,日立ABB电网公司的RES670 PMU已获得IEEE认证,提高了可靠性并加速了其全球应用。国际一致性测试提高了技术可靠性并促进了竞争优势。
细分市场概览
依组件划分
相位测量单元(PMU)作为即时相位资料撷取的核心硬体设备,在市场上占主导地位。相数据集中器 (PDC) 作为关键的中间设备,聚合并同步 PMU 数据,用于进阶监控和控制应用。
依应用领域划分
监控和分析领域占最大占有率,这主要得益于 PMU 在广域监测、故障检测和稳定性分析方面的应用日益广泛。
离线应用,包括事后分析和模型验证,在系统规划和可靠性改进方面也发挥关键作用。
北美 - 市场领导者
北美市场在 2024 年的规模将达到 1.058 亿美元,仍然是市场主导地区,这主要得益于美国能源部 SGIG 和 SGDP 等智慧电网项目的大力投资以及 PMU 的早期部署。
欧洲
脱碳目标和先进的再生能源併网正在推动输电系统营运商(TSO),例如 TenneT 和英国国家电网,部署广域电网稳定系统 (WAMS)。
亚太地区
印度、中国和东南亚地区电网的快速扩张、城市化进程以及停电风险,显着增加了对同步器等电网稳定解决方案的需求。
拉丁美洲、中东和非洲
这些地区目前仍处于应用初期,但随着再生能源渗透率的提高和电网现代化项目的推进,预计将实现稳步增长。
The global synchrophasor market is witnessing significant momentum as utilities increasingly transition toward modern, digital, and resilient grid infrastructures. According to the report, the market was valued at USD 282.42 million in 2024, is expected to rise to USD 300.08 million by 2025, and is projected to reach USD 649.42 million by 2032, reflecting a strong CAGR of 11.66%. In 2024, North America led the market with a 37.46% share, supported by high smart-grid adoption, early PMU deployment programs, and strong regulatory backing.
Synchrophasors-also known as synchronized phasors-provide real-time measurements of electrical parameters across the power grid. These measurements are collected by Phasor Measurement Units (PMUs) and transmitted to Phasor Data Concentrators (PDCs) for wide-area analysis and control. These high-precision, time-synchronized data streams enable utilities to identify faults, detect instability, and enhance situational awareness across large geographical regions, improving both operational efficiency and system reliability. With the global shift toward smart grids, PMUs have become critical components in maintaining grid resilience, accommodating renewable energy integration, and preventing large-scale outages.
Market Dynamics
Market Driver - Economic Advantages Strengthen Adoption
The deployment of synchrophasor technology delivers major operational and economic advantages. Utilities benefit from reduced operations and maintenance costs, improved asset utilization, and enhanced visibility into system performance. By enabling continuous monitoring of voltage, frequency, and phase angles, synchrophasors significantly reduce outage risk and optimize grid performance. These efficiencies translate into long-term cost savings for utilities and end consumers, encouraging wider deployment across regional and national grids.
Market Driver - Grid Modernization Spurs PMU Installations
Aging grid infrastructure is a major global concern. Many countries face challenges such as equipment failures, blackouts, and limited integration capacity for renewable energy sources. Synchrophasors address these issues by providing real-time data essential for system operators to make accurate decisions during grid disturbances. Their ability to support renewable integration, stabilize grid operations, and reduce losses makes PMUs indispensable for grid modernization efforts.
Market Restraint - High Initial Costs
Despite their benefits, high installation and integration costs remain a major barrier. Synchrophasor systems require PMUs, PDCs, storage, software, communication networks, cybersecurity layers, and skilled personnel. This increases upfront costs, particularly for utilities in developing economies. However, increasing government support and tech advancements are expected to reduce costs over time.
Market Opportunity - Digitization of Grid Infrastructure
The global transition to clean energy is accelerating grid digitalization. With renewable penetration increasing, power systems are facing greater variability, requiring advanced tools for forecasting, monitoring, and control. The International Energy Agency notes that digital technologies can save USD 1.8 trillion in global grid investment by 2050. As utilities aim to achieve net-zero goals, investments in PMU-based Wide Area Monitoring Systems (WAMS) are expected to grow significantly.
Market Challenge - Cybersecurity Risks
Synchrophasor systems generate sensitive real-time data, making cybersecurity a critical concern. Data confidentiality, integrity, and availability must be protected end-to-end-from PMUs to PDCs and control centers. Cyber threats such as data tampering or denial-of-service attacks can compromise system reliability, requiring robust protection frameworks.
Market Trends
A major trend is the growing global recognition and certification of synchrophasor systems. For example, Hitachi ABB Power Grids' RES670 PMU received IEEE certification, strengthening trust and accelerating global adoption. International conformity testing enhances technological credibility and promotes competitive differentiation.
Segmentation Overview
By Component
Phasor Measurement Units (PMUs) dominate the market as core hardware devices for real-time phasor data collection. Phasor Data Concentrators (PDCs) serve as essential intermediaries, aggregating and synchronizing PMU data for advanced monitoring and control applications.
By Application
The monitoring and analysis segment holds the largest share, fueled by growing deployment of PMUs for wide-area monitoring, disturbance detection, and stability analysis.
Offline applications-including post-event analysis and model validation-also play a critical role in improving system planning and reliability.
North America - Market Leader
Valued at USD 105.80 million in 2024, North America remains the dominant region due to robust smart-grid investments and early PMU deployment through U.S. Department of Energy programs such as SGIG and SGDP.
Europe
Driven by decarbonization targets and high renewable integration, Europe is expanding WAMS deployment through TSOs such as TenneT and National Grid.
Asia Pacific
Rapid grid expansion, urbanization, and blackout risks in India, China, and Southeast Asia drive significant demand for grid-stability solutions such as synchrophasors.
Latin America & Middle East/Africa
These regions are in early adoption phases but are expected to grow steadily as renewable penetration rises and grid modernization programs advance.
Conclusion
With the market expanding from USD 282.42 million in 2024 to USD 649.42 million by 2032, synchrophasors are becoming central to global grid modernization efforts. Their role in enabling real-time grid visibility, renewable integration, and operational reliability positions them as essential technologies for the future of electricity networks.
Segmentation By Component
By Application
By Region