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光伏发电技术 调峰调频 ★ 5.0

一种用于集成大规模太阳能电站的电力系统的新型分层/分散式自动发电控制方案

A Novel Hierarchical/Decentralized AGC Scheme for Power Systems Integrated With Large-Scale Solar Power Plants

作者 Siavash Yari · Masood Mottaghizadeh · Innocent Kamwa · Dmitry Rimorov
期刊 IEEE Access
出版日期 2025年1月
技术分类 光伏发电技术
技术标签 调峰调频
相关度评分 ★★★★★ 5.0 / 5.0
关键词 大型太阳能发电厂 自动发电控制 网络稳定性 混合方案 互联电力系统
语言:

中文摘要

随着大规模太阳能电站(LSSPPs)在输电系统中渗透率的提升,其对电网稳定性的贡献不容忽视。理论上,此类资源可视为类似传统电厂以维持网络稳定性。然而,多样的频率调节资源带来了系统复杂性、容量及响应速度的差异,给自动发电控制(AGC)性能带来挑战。为此,本文提出一种新型混合(分层/分散式)控制方案,以提升传统AGC在含LSSPPs场景下的性能,并充分挖掘其稳定潜力。首先,提出一种计及传统电厂AGC性能、LSSPP直流链路电压动态、最严重扰动下的临界运行点及负荷模型的旋转备用计算方法。随后,分散式AGC系统与集中式算法并行协同运行,实现频率与联络线功率的调节。此外,引入一个简洁精确的指标(ΔP<sub>IPS_x</sub>)用于估计互联电力系统扰动后的有功功率变化量。基于DIgSILENT PowerFactory软件,在IEEE 39节点和PST-16测试系统中进行仿真,结果验证了所提方案在提升AGC性能与系统稳定性方面的有效性。

English Abstract

As the penetration level of large-scale solar power plants (LSSPPs) in transmission systems increases, their contribution to the stability of networks cannot be overlooked. Theoretically, such resources can be considered akin to traditional power plants in preserving network stability. Moreover, diverse frequency regulation resources exert varying levels of system complexity, capacity, and response speed, thereby posing challenges to appropriate performance automatic generation control (AGC). As a remedy, a new hybrid (hierarchical/decentralized) scheme is proposed to improve the performance of traditional AGC mechanisms in the presence of LSSPPs and utilize maximum potential capability to ensure network stability. First, a new method is employed to calculate the spinning reserve for LSSPPs considering the performance of AGC for traditional power plants, the dynamics of the DC-link voltage in LSSPPs, the critical operating point related to the most severe disturbance, and the load model. Following this, the decentralized AGC system works hierarchically and in parallel with the centralized algorithm to regulate the frequency and tie lines exchange power. Furthermore, a simple and accurate index ( P_IPS_x ) is provided to estimate the amount of active power changes after the disturbance in an interconnected power system (IPS). The simulation results are conducted in IEEE 39-bus and PST-16 test systems using DIgSILENT PowerFactory software. The simulation results verify the efficacy and performance of our proposed scheme to improve the AGC system performance and system stability.
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SunView 深度解读

该分层/分散式AGC方案对阳光电源SG系列光伏逆变器与PowerTitan储能系统的协同控制具有重要价值。文中提出的旋转备用计算方法可直接应用于ST储能变流器的容量配置优化,通过考虑直流链路电压动态特性提升频率响应速度。分散式AGC架构与阳光电源iSolarCloud平台的分布式控制理念高度契合,可实现大规模光储电站的快速频率调节。所提ΔP_IPS指标为构网型GFM逆变器的功率扰动估计提供新思路,有助于优化虚拟同步机VSG参数整定,提升电网稳定性贡献能力,支撑公司在新型电力系统调频辅助服务市场的技术竞争力。