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Parallel R-L configuration crowbar with series R-L circuit protection for LVRT strategy of DFIG under transient-state

机译:具有串联R-L电路保护的并行R-L配置撬杠,用于瞬态下DFIG的LVRT策略

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摘要

This paper proposes an impedance protection circuit configuration to enhance the ride-through of doubly-fed induction generators (DFIGs) based wind turbines (WTs) during faults. The proposed impedance protection circuit configuration comprises of a parallel R-L impedance crowbar and a series R-L impedance circuit. Traditionally, resistive-crowbar (i.e., R-crowbar) circuit is applied as the means of protection for the DFIG WT which efficiently protects the rotor-side converter (RSC) and dc-link capacitor against the effects of severe grid faults. However, the conventional R-crowbar circuit disconnects the RSC leading to the loss of generator excitation control. During that time, the WT generator becomes a conventional squirrel-cage induction generator (SCIG) which obtains its magnetization current from the point of common coupling (PCC) via stator winding terminals. This phenomenon further deepens the voltage-dip at the PCC. Alternatively, integrating the R-crowbar with series R-L branch partially maintains the RSC connection to the rotor winding. Hence the generator excitation control is also partially maintained but oscillations of the rotor currents and dc-link voltage can still affect the ride-through performances of WT driven by the DFIG. With the proposed protection circuit configuration, it compensates the deficiency of the two conventional protection circuits configuration. In order to validate the performance of the proposed scheme, extensive simulation studies are carried out using MATLAB/Simulink software. From the comparative simulation results, improved performances of the DFIG under transient-state are achieved with the proposed protection circuit configuration than the conventional protection circuits. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文提出了一种阻抗保护电路配置,以增强故障期间基于双馈感应发电机(DFIG)的风力涡轮机(WT)的穿越能力。提出的阻抗保护电路配置包括一个并联的R-L阻抗撬棍和一个串联的R-L阻抗电路。传统上,电阻撬棍(即R撬棍)电路用作DFIG WT的保护手段,可有效保护转子侧变流器(RSC)和直流母线电容器免受严重电网故障的影响。然而,常规的R型撬棍电路使RSC断开,从而导致发电机励磁控制的损失。在此期间,WT发电机变成了常规的鼠笼式感应发电机(SCIG),它通过定子绕组端子从公共耦合点(PCC)获得其磁化电流。这种现象进一步加深了PCC的电压降。或者,将R型撬棍与串联的R-L分支集成在一起,可以部分保持RSC与转子绕组的连接。因此,发电机励磁控制也得到部分维持,但转子电流和直流母线电压的振荡仍会影响由DFIG驱动的WT的穿越性能。利用所提出的保护电路配置,它弥补了两种常规保护电路配置的不足。为了验证所提出方案的性能,使用MATLAB / Simulink软件进行了广泛的仿真研究。从比较的模拟结果来看,所提出的保护电路配置比常规保护电路在瞬态下具有更高的DFIG性能。 (C)2017 Elsevier B.V.保留所有权利。

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