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Instantaneous Symmetrical Component Theory Based Parallel Grid Side Converter Control Strategy for Microgrid Power Management

机译:基于瞬时对称组件理论的微电网电网的平行电网侧转换器控制策略

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摘要

This paper proposes a centralized control strategy for power management of hybrid microgrid connected to the grid using a parallel combination of grid side converters (GSCs). An improved version of instantaneous symmetrical component theory is developed and is used for the control of parallel operated GSCs, which results in reduced sensor requirement, control complexity, and communication bandwidth. In addition, a simple power management algorithm is developed to test the efficacy of the proposed parallel grid side converter control strategy for all the microgrid modes considering state of charge limits of hybrid energy storage system, load changes, and renewable power variations. In the proposed system, a better dc link voltage regulation is achieved and usage of supercapacitor reduces the current stresses on the battery. With the proposed control strategy, the essential features of grid side converters like power quality, power injection, bidirectional power flow, and proportional power sharing are achieved. The effectiveness of the developed control strategy for the proposed system is tested using MATLAB based simulink environment and validated experimentally using a laboratory prototype.
机译:本文提出了一种使用电网侧转换器(GSCs)的并联组合连接到网格的混合微电网的电力管理的集中控制策略。开发了一种改进的瞬时对称组件理论的版本,用于控制并行操作的GSC,这导致传感器要求降低,控制复杂性和通信带宽。此外,开发了一种简单的电力管理算法以测试所提出的并联网格侧转换器控制策略的所有微电网模式的功效,考虑混合能量存储系统的充电限制,负载变化和可再生功率变化。在所提出的系统中,实现了更好的直流链路电压调节,并且超级电容器的使用降低了电池上的电流应力。利用所提出的控制策略,实现了电网侧转换器等电网侧转换器,如电力质量,功率注入,双向动力流和比例功率共享。使用基于Matlab的Simulink环境测试所提出的系统的发达的控制策略的有效性,并使用实验室原型进行实验验证。

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