Impact of existing fault protections of wind power plants with Doubly Fed Induction Machines on Fault Currents

Andrija Mitrovic, L. Strezoski
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Abstract

With constant increase in the number of wind power plants and thus their penetration in power production, system robustness and stability have become of a high interest. Due to their advantages, doubly fed inductions machines are mainly in use as generating units in wind power plants. While rotor windings are connected to the grid over power converters, stator windings are directly connected to the grid and thus these generating units are highly sensitive to voltage disturbances. Voltage drops during faults lead to high voltages and currents on rotor side due electromagnetic coupling between stator and rotor. These voltages and currents can damage expensive power electronics on the rotor side. In the past, to save the equipment, wind power plants with doubly fed induction machines have been disconnected from the grid during faults which is unacceptable today when the high number of these plants is considered. Grid operators require from these types of power sources to have fault ride through or low voltage ride through capabilities to support the grid during low voltage periods. This paper presents an overview of the currently existing techniques developed to enable fault ride through requirements for doubly fed induction machines, and consequently their influence on modeling these power plants for fault calculation and relay protection purposes.
双馈感应电机风电场现有故障保护对故障电流的影响
随着风力发电厂数量的不断增加和在电力生产中的渗透,系统的鲁棒性和稳定性已成为人们高度关注的问题。由于双馈感应电机的优点,双馈感应电机主要用作风力发电厂的发电机组。当转子绕组通过电源变流器连接到电网时,定子绕组直接连接到电网,因此这些发电机组对电压扰动非常敏感。由于定子和转子之间的电磁耦合,故障时电压下降导致转子侧电压和电流高。这些电压和电流会损坏转子侧昂贵的电力电子设备。在过去,为了节省设备,双馈式感应电机风力发电厂在故障期间会与电网断开,这在考虑到这些发电厂数量众多的今天是不可接受的。电网运营商要求这些类型的电源具有故障穿越或低电压穿越能力,以在低电压期间支持电网。本文概述了目前为实现双馈感应电机的故障穿越要求而开发的现有技术,以及它们对为故障计算和继电保护目的建立这些发电厂模型的影响。
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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