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PHIL Experimentation on Fault Ride Through Behavior of Doubly Fed Induction Generator-Based Wind System in the Presence of Fault Current Limiter

机译:PHIL实验对故障行为的故障乘坐在故障电流限制器存在下基于双馈感应发电机的风系统

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摘要

In the literature, the fault ride through (FRT) studies of the doubly fed induction generator (DFIG)-based wind system consider fault to occur after the fault current limiter (FCL) with respect to the DFIG system. In this article, the fault is considered before FCL and the power hardware in the loop (PHIL) experimentation is performed. Results demonstrate that the occurrence of the fault before FCL can worsen the FRT of the DFIG system. To address this, a novel arrangement of FCL with four power electronic switches in a particular fashion has been suggested. This arrangement allows the perception of fault occurring before FCL as after FCL due to the alternate path of power flow thereby improving the FRT of the DFIG. Furthermore, a quick fault detection and switching technique has been developed which is able to detect the fault by comparing the instantaneous value of the phase current with the threshold. Thereby, it is possible to achieve on/off of the switches upon the fault occurrence with negligible time delay. In order to validate the effectiveness of the proposed technique, the PHIL experimentation is performed at sub/supersynchronous mode of operations (±0.1 slip), different fault resistances (6, 20 Ω), delay time (40 ms), and various fault perception instants (negative, zero, positive). The results justify the effectiveness of the proposed arrangement in improving FRT of the DFIG when a fault occurs before the FCL with respect to the DFIG in comparison to the existing literature and in the absence of FCL in the system.
机译:在文献中,通过倍频(FRT)的故障乘坐(FRT)的研究,基于双馈电流发电机(DFIG)的风系统考虑在故障电流限制器(FCL)相对于DFIG系统之后发生故障。在本文中,在FCL之前考虑故障,并执行循环中的电源硬件(Phil)实验。结果表明,FCL之前的故障发生可能会使DFIG系统的FRT恶化。为了解决这个问题,已经提出了一种以特定方式为具有四个电力电子开关的FCL的新布置。这种布置允许在FCL之前发生故障发生的故障,如在FCL之后由于电流的替代路径,从而改善了DFIG的FRT。此外,已经开发了一种快速故障检测和切换技术,其能够通过将相电流的瞬时值与阈值进行比较来检测故障。由此,可以实现开/关 在故障发生时的开关具有可忽略的时间延迟。为了验证所提出的技术的有效性,菲尔实验在亚/超同步操作模式(±0.1滑动),不同的故障电阻(6,20Ω),延迟时间(40ms)和各种故障感知瞬间(负,零,正)。结果证明了所提出的安排在改善DFIG的FRT时改善DFIG的效果,与现有文献相比,在系统中没有FCL的情况下发生故障。

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