利用虚拟惯性仿真增强微电网弹性的储能尺寸

K. Sharma, R. Bhimasingu
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引用次数: 0

摘要

本文提出了一种估算低惯性微电网虚拟惯性仿真所需储能系统(ESS)尺寸的方法。基于分布式能源(DER)的微电网系统由太阳能光伏发电(SPV)、风力发电场(WF)和基于同步电机(SM)的柴油发电机组为本地负荷供电组成。微电网中考虑的基于ESS的虚拟同步发电机(VSG)以电网支持模式运行[6],采用锁相环同步。ss - vsg机组用于补偿电力电子接口分布式发电的惯性不足,提高微电网与SM的弹性。采用基于摆动方程的虚拟同步发生器算法实现虚拟惯性注入。选择最严重的偶然性以及适当的虚拟惯性Hvsg和阻尼Dvsg值来确定ESS的惯性注入容量,从而提高整体频率瞬态和稳态响应。考虑到ESS- vsg机组在扰动期间仅负责惯性频率响应和一次频率响应,而在稳态运行期间不参与负荷分担,对ESS容量进行了估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Storage Sizing for Enhancing Microgrid Resiliency using Virtual Inertia Emulation
This paper proposes an approach to estimate the required size of Energy Storage System (ESS) to emulate virtual inertia for a low inertia microgrid. The Distributed Energy Resources (DER) based microgrid system consists of Solar Photovoltaic (SPV), Wind Farm (WF) and Synchronous Machine (SM) based Diesel power generation unit feeding local loads. ESS based Virtual Synchronous Generator(VSG) considered in microgrid is operating in grid supporting mode [6] synchronised using PLL. ESS-VSG unit is utilised for compensating the lack of inertia in Power Electronics interfaced distributed generation boosting the resiliency of microgrid in unison with SM. The virtual inertia injection is achieved using swing equation based Virtual Synchronous Generator algorithm. The severe most contingency in addition with appropriate value of Virtual Inertia Hvsg and Damping Dvsg is selected to determine the ESS capacity for inertia injection such that overall frequency transient and steady state response is enhanced. ESS capacity is estimated considering ESS-VSG unit is only responsible for inertial and primary frequency response during the time of disturbances and does not participate in load sharing during steady state operation.
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