Fault Tolerant Ancillary Function of Power Converters in Distributed Generation Power System within a Microgrid Structure

A. Tommaso, F. Genduso, R. Miceli, G. R. Galluzzo
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引用次数: 9

Abstract

Distributed generation (DG) is deeply changing the existing distribution networks which become very sophisticated and complex incorporating both active and passive equipment. The simplification of their management can be obtained assuming a structure with small networks, namely, microgrids, reproducing, in a smaller scale, the structure of large networks including production, transmission, and distribution of the electrical energy. Power converters in distributed generation systems carry on some different ancillary functions as, for example, grid synchronization, islanding detection, fault ride through, and so on. In view of an optimal utilization of the generated electrical power, fault tolerant operation is to be considered as a suitable ancillary function for the next future. This paper presents a complete modeling of fault tolerant inverters able to simulate the main fault type occurrence and a control algorithm for fault tolerant converters suitable for microgrids. After the model description, formulated in terms of healthy device and leg binary variables, and the illustration of the fault tolerant control strategy, the paper shows how the control preserves power quality when the converter works in the linear range. The effectiveness of the proposed approach and control is shown through computer simulations and experimental results.
微网结构下分布式发电系统中电源变流器的容错辅助功能
分布式发电(DG)正在深刻地改变现有的配电网,使其变得非常复杂和复杂,包括有源和无源设备。如果采用小型电网的结构,即微电网,可以在较小的规模上复制大型电网的结构,包括电能的生产、传输和分配,从而简化其管理。分布式发电系统中的电源变流器承担着电网同步、孤岛检测、故障穿越等不同的辅助功能。为了最大限度地利用所产生的电力,容错操作将被认为是未来一种合适的辅助功能。本文提出了一种能够模拟主要故障类型发生的容错逆变器的完整模型和一种适用于微电网的容错逆变器控制算法。通过对健康装置和腿部二元变量的模型描述和容错控制策略的说明,说明了当变换器在线性范围内工作时,控制是如何保持电能质量的。计算机仿真和实验结果表明了该方法和控制的有效性。
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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