Coordinated control of a solar and battery system in a microgrid

Ling Xu, Zhixin Miao, Lingling Fan
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引用次数: 24

Abstract

This paper investigates the control strategies of a Li-Ion battery group with a PV array within a microgrid. In the grid-connected mode, the battery and the PV array operate at power control mode, while in the autonomous mode the battery provides voltage and frequency control instead. This paper presents a detailed model of battery including state of charge (SOC) modeling, analysis of short-time and long-time transient characteristics, and analysis of a detailed PV array model. This paper also presents effective control strategies for a battery with the PV array system to operate at both the grid-connected and the autonomous modes. The paper presents results from a test microgrid consisting of a voltage source converter (VSC) interfaced battery, a PV array, passive loads and an induction machine which is built using power systems simulation software. The paper presents results from simulations that demonstrate the proposed control strategies, which could assist in the coordination of independent distributed generation.
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微电网中太阳能和电池系统的协调控制
本文研究了微电网中锂离子电池组与光伏阵列的控制策略。在并网模式下,电池和光伏阵列工作在功率控制模式下,而在自主模式下,电池提供电压和频率控制。本文提出了一个详细的电池模型,包括荷电状态(SOC)建模、短时和长时间暂态特性分析以及详细的光伏阵列模型分析。本文还提出了光伏阵列电池在并网和自主模式下的有效控制策略。本文介绍了利用电力系统仿真软件构建的由电压源变换器(VSC)接口电池、光伏阵列、无源负载和感应电机组成的微电网的测试结果。仿真结果表明,所提出的控制策略有助于独立分布式发电的协调。
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