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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:存在故障限流器时基于双馈感应发电机的风力系统故障穿越行为的PHIL实验

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摘要

In recent years, the large-scale coal fired thermal power plants are facing serious setback to meet the growing electricity need of the planet. In addition to this, the increased environmental concern of the mankind has paved the path for alternate energy sources to satisfy the thirst of global energy need. Currently, the doubly fed induction generator (DFIG) based wind system has got lot of attention due to its inherent benefits of reduced converter size and independent control of back to back converters. The main drawback of the DFIG wind system is its poor fault ride through (FRT) capabilities. Most of the FRT studies in the literature consider fault to take place after the fault current limiter (FCL) with respect to the DFIG wind system. However, in this paper, the power hardware in loop (PHIL) experimentation is conducted in order to study the transient behavior when fault occurs before the FCL with respect to DFIG system. The system under study mainly consists of a 2 KW rated DFIG wind system. This is connected to the modified IEEE 33 bus distribution system simulated in the real time digital simulator (RTDS) platform via power amplifier. The PHIL experimental results convey an important message that the occurrence of fault before FCL may worsen the FRT of the DFIG wind system and hence a combination of different FRT techniques would be recommended under such cases.
机译:近年来,大型燃煤火力发电厂正面临严重的挫折,以满足地球不断增长的电力需求。除此之外,人类日益关注环境问题为满足全球能源需求的替代能源铺平了道路。当前,基于双馈感应发电机(DFIG)的风力发电系统因其固有的好处是减小了变流器的尺寸并独立控制了背靠背变流器,因此备受关注。 DFIG风力系统的主要缺点是故障穿越能力(FRT)能力差。文献中的大多数FRT研究都认为故障发生在DFIG风力系统的故障电流限制器(FCL)之后。然而,本文针对DFIG系统进行了电源硬件环路(PHIL)实验,以研究故障发生在FCL之前的瞬态行为。所研究的系统主要包括2 KW额定DFIG风力系统。它通过功率放大器连接到在实时数字仿真器(RTDS)平台中仿真的经修改的IEEE 33总线分配系统。 PHIL的实验结果传达了一个重要信息,即在FCL之前发生故障可能会使DFIG风力系统的FRT恶化,因此在这种情况下,建议结合使用不同的FRT技术。

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