Impact of LVRT capability of wind turbines on distance protection of AC grids

Lina He, Chen-Ching Liu
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引用次数: 8

Abstract

When a transmission line close to a wind farm (WF) with doubly fed induction generators (DFIGs) experiences a short circuit (SC) fault, the resulting voltage dip on the WF terminal bus may trigger actions from the crowbar circuits of DFIGs. These actions prevent high rotor currents that can be damaging to power electronic converters. Under this condition, DFIGs have to absorb reactive power from the external power grid to provide generator excitation. As a result, it will further depress the voltage at the WF terminal bus and affect the protective relay operation of transmission lines in severe situations. This paper is concerned with the performance of distance relays on a power grid with WFs that are equipped with crowbar circuits. Numerical simulations are conducted on IEEE 39 bus system with WF connections. It is found that the fault on the terminal line of a WF is likely to induce mis-coordination of distance relays, leading to system security problems.
风电机组LVRT性能对交流电网距离保护的影响
当靠近双馈感应发电机(DFIGs)风电场(WF)的传输线发生短路(SC)故障时,在WF终端母线上产生的电压下降可能触发DFIGs的锁杆电路的动作。这些动作防止高转子电流,可以破坏电力电子转换器。在这种情况下,DFIGs必须从外部电网吸收无功功率来提供发电机励磁。这将进一步降低WF端子母线处的电压,在严重的情况下影响传输线保护继电器的运行。本文研究了在带撬棍电路的WFs电网中距离继电器的性能。在采用WF连接的ieee39总线系统上进行了数值仿真。研究发现,WF终端线路故障容易引起距离继电器失配,导致系统安全问题。
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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