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Impacts of Grounding Configurations on Responses of Ground Protective Relays for DFIG-Based WECSs—Part I: Solid Ground Faults

机译:接地配置对基于DFIG的WECS的接地保护继电器的响应的影响-第一部分:固体接地故障

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摘要

One of the requirements for safe, stable, sustainable, and profitable operation of doubly fed induction generators (DFIGs)-based wind energy conversion systems (WECSs) is the accurate and reliable protection against electrical faults, in particular, ground faults. The performance of protective devices employed to achieve this requirement is highly dependent on the grounding configuration of the DFIG-based WECS. This paper investigates impacts of the grounding configuration on the performance of protective devices used to protect DFIGs-based WECSs from electrical ground faults. Investigated grounding configurations include solid grounding, low-resistance grounding, high-resistance grounding, and no grounding. This paper also investigates the use of a capacitor in parallel with a low resistance, as a grounding configuration, to limit ground potentials, reduce ground currents, and minimize impacts on responses of ground protective relays. The impacts of the grounding configurations on protective devices are observed through their ability to identify faults, as well as their speed to respond to identified faults. Simulation and experimental results reveal that adequately designed low-resistance grounding offers the minimum impacts on protective devices used for ground protection of DFIG-based WECSs.
机译:基于双馈感应发电机(DFIG)的风能转换系统(WECS)的安全,稳定,可持续和可盈利的运行要求之一是对电气故障(尤其是接地故障)的准确可靠的保护。用于实现此要求的保护设备的性能高度依赖于基于DFIG的WECS的接地配置。本文研究了接地配置对用于保护基于DFIG的WECS免受电气接地故障的保护设备性能的影响。研究的接地配置包括实心接地,低电阻接地,高电阻接地和无接地。本文还研究了使用低电阻并联的电容器作为接地配置,以限制接地电势,降低接地电流并最小化对接地保护继电器响应的影响。接地配置对保护设备的影响可通过其识别故障的能力以及对已识别故障的响应速度来观察。仿真和实验结果表明,经过适当设计的低电阻接地对基于DFIG的WECS进行接地保护的保护装置的影响最小。

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