Autonomous microgrid with energy storage system

L. S. Araujo, M. G. Villalva, T. G. Siqueira
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引用次数: 1

Abstract

This paper shows the development of a strategy to connect multiple different types of converters in parallel in an isolated single-phase microgrid harmoniously. First, the droop control strategy for microgrids and the particularities of the microgrid operation are explained, such as controlling the voltage and current of the battery to maintain its integrity. Then three different types of converters in a microgrid are described, and different droop equations are proposed for each converter to perform the correct control. These equations also include the priority feature that prioritizes the renewable sources instead of the batteries, when feeding loads in autonomous operation. Simulations of a modeled microgrid with four converters and two loads are performed. The functionality of the equations are verified in terms of priority selection of generation, the correct power balance and the control to avoid damages in microgrid elements, especially to the batteries.
带有储能系统的自主微电网
本文提出了一种将多个不同类型的变流器在孤立的单相微电网中和谐并联的策略。首先,阐述了微电网的下垂控制策略和微电网运行的特殊性,如控制电池的电压和电流以保持其完整性。然后对微电网中三种不同类型的变流器进行了描述,并对每种变流器提出了不同的下垂方程以实现正确的控制。这些方程还包括优先考虑可再生能源而不是电池的特性,当在自动运行中馈电负荷时。对具有四个变流器和两个负载的模型微电网进行了仿真。从发电的优先选择、正确的功率平衡和避免微电网元件特别是电池损坏的控制等方面验证了方程的功能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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