Frequency Control Method of Microgrid Based on Online Parameter Identification

Yin Cheng, Yong Shi, Chunyan Ma
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引用次数: 0

Abstract

The optimization of frequency controller parameters is the key to improve the frequency performance of microgrids. Due to the complex structure of the microgrid system, the optimization of the controller parameters is difficult. To solve the above problems, this paper first obtains the equivalence model of microgrid system by derivation, then identifies the equivalence parameters in the model by using genetic algorithm, and finally obtains the adaptive law of controller parameters by typical system rectification to realize the dynamic regulation of frequency. The proposed method not only allows real-time identification when the internal parameters of the microgrid are unknown, but also the identification model can be used for the design of the controller parameters, which is beneficial to the recovery of the grid frequency. Finally, the effectiveness of the proposed method is experimentally verified in a microgrid simulation experiment.
基于在线参数辨识的微电网频率控制方法
频率控制器参数的优化是提高微电网频率性能的关键。由于微电网系统结构复杂,控制器参数的优化是一个难点。针对上述问题,本文首先通过推导得到微电网系统的等效模型,然后利用遗传算法对模型中的等效参数进行辨识,最后通过典型系统整流得到控制器参数的自适应规律,实现频率的动态调节。该方法不仅可以在微电网内部参数未知的情况下进行实时辨识,而且辨识模型可用于控制器参数的设计,有利于电网频率的恢复。最后,通过微网仿真实验验证了所提方法的有效性。
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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