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虚拟电厂参与惯量与一次调频的聚合模型及市场机制

Aggregation Model and Market Mechanism for Virtual Power Plant Participation in Inertia and Primary Frequency Response

作者 Changsen Feng · Zhongliang Huang · Jun Lin · Licheng Wang · Youbing Zhang · Fushuan Wen
期刊 IEEE Transactions on Power Systems
出版日期 2025年11月
卷/期 第 41 卷 第 3 期
技术分类 系统并网技术
技术标签 调峰调频 虚拟同步机VSG 构网型GFM 微电网
相关度评分 ★★★★★ 5.0 / 5.0
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中文摘要

针对同步机惯量下降问题,提出虚拟电厂(VPP)聚合分布式资源参与惯量与一次调频(IPFR)的市场机制。构建含能量-备用-IPFR的联合市场框架,引入考虑响应延迟的优化聚合模型,并采用机会约束处理新能源预测误差。IEEE案例验证其高精度频率响应与约40%系统成本降低效果。

English Abstract

The declining provision of inertia by synchronous generators in modern power systems necessitates aggregating distributed energy resources (DERs) into virtual power plants (VPPs) to unlock their potential in delivering inertia and primary frequency response (IPFR) through ancillary service markets. To facilitate DER participation in the IPFR market, this paper proposes an aggregation model and market mechanism for VPPs participating in IPFR. First, an energy-reserve-IPFR market framework is developed, in which a VPP acts as an intermediary to coordinate heterogeneous DERs. Second, by taking into account the delay associated with inertial response, an optimization-based VPP aggregation method is introduced to encapsulate the IPFR process involving a variety of DERs. Third, an energy-reserve-IPFR market mechanism with VPP participation is introduced, aiming to minimize social costs, where stochastic deviations of renewable energy generation are explicitly modeled through chance-constrained reformulations, ensuring that the cleared energy, reserve, and IPFR schedules remain secure against forecast errors. Case studies on IEEE 30-bus and IEEE 118-bus systems show that the nadir and quasi-steady-state frequencies are reproduced by the VPP aggregation model with a mean absolute percentage error ≤ 0.03%, and the proposed market mechanism with VPP participation reduces the total system cost by approximately 40% and increases the net profit by about 30%.
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SunView 深度解读

该文高度契合阳光电源在构网型储能系统(如PowerTitan、ST系列PCS)及iSolarCloud平台的战略布局。VPP聚合模型可直接赋能阳光电源的光储协同调频解决方案,尤其适用于高比例新能源并网场景;其IPFR市场机制可集成至iSolarCloud智能调度模块,提升PCS在调峰调频辅助服务市场的投标竞争力。建议加快将VSG/VPP聚合算法嵌入ST系列PCS固件,并在PowerTitan项目中开展实证示范。