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电动汽车驱动 虚拟同步机VSG 下垂控制 微电网 ★ 5.0

虚拟同步发电机在孤岛微电网中的经济功率共享与稳定性增强

Economic Power-Sharing and Stability Enhancement for Virtual Synchronous Generators in Islanded MG

作者 Shraf Eldin Sati · Muhammad Bakr Abdelghany · Basil Hamad · Ahmed Al-Durra · Hatem H. Zeineldin · Tarek H. M. EL-Fouly
期刊 IEEE Transactions on Power Systems
出版日期 2024年6月
技术分类 电动汽车驱动
技术标签 虚拟同步机VSG 下垂控制 微电网
相关度评分 ★★★★★ 5.0 / 5.0
关键词 虚拟同步发电机 孤岛微电网 经济调度 频率变化率 稳定性
语言:

中文摘要

基于逆变器的可控分布式电源可通过基于成本的下垂控制策略在孤岛微电网中实现经济功率分配。然而,引入动态成本信息可能影响系统稳定性。本文提出一种结合虚拟同步发电机技术的经济功率共享机制,在保证动态功率按需分配的同时增强系统惯性和阻尼特性,从而提升孤岛微电网的运行经济性与暂态稳定性。

English Abstract

Dispatchable inverter-based distributed generators can share their power economically in islanded microgrids (MGs) using cost-based droop schemes. However, incorporating cost function into the droop adversely affects the MG stability, and since the main limitation of droop is the lack of inertia provision, a high rate of change of frequency (RoCoF) following a frequency event arises. To address these aspects, this paper proposes a novel control structure for the virtual synchronous generator (VSG) that emulates inertia to mitigate the RoCoF, enhance the MG marginal stability, and preserve decentralized economic power-sharing. The proposed economic dispatch-based VSG (ED-VSG) operates as a cost-based droop during steady-state and a VSG during disturbances. An improved version of ED-VSG is proposed by adding a zero to the transfer function of the ED-VSG to increase the MG stability margin further. A comprehensive evaluation framework has been employed to show the efficacy of the proposed control. Sensitivity analyses have been performed on the MG eigenvalues, considering parameter variations. Consequently, numerical simulations for small and large-scale systems and a lab-scale experimental MG setup show that the proposed controller optimally manages the MG. Furthermore, the results reveal a significant reduction in the maximum RoCoF, highlighting a commendable alignment with stability-oriented techniques.
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SunView 深度解读

该经济功率共享与VSG稳定性增强技术对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。研究提出的基于成本的下垂控制策略可直接应用于多储能单元并联场景,实现不同SOC状态下的经济调度优化。结合VSG技术的惯性与阻尼增强机制,可提升阳光电源构网型GFM控制策略在孤岛微电网中的暂态稳定性能。该方法特别适用于工商业储能系统和离网光储项目,在保证功率按需分配的同时优化系统运行成本,为ST2752KWH-H等大型储能产品的多机并联控制提供理论支撑,增强iSolarCloud平台的智能调度能力。