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风电变流技术 可靠性分析 ★ 5.0

动态热定值对高风电渗透率及频率安全约束下电力系统可靠性的影响

Reliability impact of dynamic thermal rating on power system under high wind penetration and frequency security constraints

作者 Xi Hea · Jiashen Teha · Bader Alharbi
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 400 卷
技术分类 风电变流技术
技术标签 可靠性分析
相关度评分 ★★★★★ 5.0 / 5.0
关键词 An ASFR model is employed to assess frequency security under increasing WPPLs.
语言:

中文摘要

摘要 随着风能越来越多地并入现代电力系统,与频率安全、输电拥堵以及整体系统可靠性相关的问题日益突出。本文研究了动态热定值(DTR)技术的应用,作为一种应对高风电渗透率和频率安全约束所带来的挑战的潜在解决方案。本文建立了一种改进的低阶聚合系统频率响应(ASFR)模型,用于分析在不同风电渗透水平下的频率动态特性。风电的接入受到系统频率约束的限制,进而影响系统的可靠性。为解决这些问题,首先评估了集成DTR技术的改进型IEEE 24节点测试系统的可靠性表现,并随后在一个扩展的IEEE RTS-96系统上验证了所提框架的可扩展性。在高负荷条件下且风电渗透率达到30%时,引入ASFR模型以表征频率安全约束,会使DTR在降低期望未供电能量(EENS)方面的缓解效益减少19.7%。结果表明,忽略频率安全约束可能导致对DTR所带来的可靠性效益的高估。为了评估系统在不同条件下的运行性能,本文考虑了四种代表性场景,风电渗透率范围从20%到50%,这些场景包含了弃风、合成惯性、减载运行以及储能系统集成等策略。结果表明,DTR在增强可再生能源并网能力的同时,在变化的负荷和频率条件下,对于维持系统可靠性和运行安全性具有关键作用。

English Abstract

Abstract With the increasing integration of wind energy into modern power systems, challenges related to frequency security, transmission congestion and overall system reliability have become increasingly critical. This paper investigates the application of Dynamic Thermal Rating (DTR) technology as a potential solution to mitigate challenges associated with high wind power penetration and frequency security constraints. A modified low-order Aggregated System Frequency Response (ASFR) model is developed to analyze frequency dynamics under different levels of wind power penetration. The integration of wind power is limited by system frequency constraints, which subsequently affect system reliability. To address these issues, the reliability performance of a modified IEEE 24-bus test system integrated with DTR is first assessed, and the scalability of the proposed framework is subsequently validated on an extended IEEE RTS-96 system. Under high-load conditions and at 30 % wind power penetration, the inclusion of the ASFR model to represent frequency security constraints reduces the Expected Energy Not Supplied (EENS) mitigation benefit of DTR by 19.7 %. The results indicate that neglecting frequency security constraints may lead to an overestimation of the reliability benefits attributed to DTR. To evaluate system performance under different conditions, four representative scenarios are considered with wind power penetration levels ranging from 20 % to 50 %. These scenarios incorporate strategies such as curtailment, synthetic inertia, de-loaded operation and energy storage system integration. The results demonstrate that DTR plays a critical role in enhancing the integration of renewable energy sources while maintaining system reliability and operational security under varying load and frequency conditions.
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SunView 深度解读

该研究对阳光电源储能系统(ST系列PCS、PowerTitan)和风电变流器产品具有重要指导意义。文中提出的动态热定额(DTR)技术与频率安全约束分析,可优化我司VSG虚拟同步机控制策略,提升高风电渗透率场景下的电网支撑能力。研究中的合成惯量、降额运行及储能集成方案,与我司GFM构网型控制技术高度契合,可增强ST储能系统在频率调节中的响应性能。建议将DTR理念融入iSolarCloud平台的预测性维护算法,实现传输线路容量动态评估,提高新能源消纳率同时保障系统可靠性,为大规模风光储一体化项目提供技术支撑。