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Mitigation of Half-Cycle Saturation of Adjacent Transformers During HVDC Monopolar Operation—Part I: Mitigation Principle and Device Design

机译:HVDC单位单据操作期间相邻变压器的半周期饱和度 - 第I部分:缓解原理和装置设计

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摘要

When HVDC transmission systems operate in the ground return mode, transformers in adjacent ac systems frequently suffer half-cycle saturation. In this two-part paper, an effective mitigation method using power electronic switches is proposed that does not compromise the ability of the protection system to detect fault currents. In Part I, a study is conducted to find the physical performance of the half-cycle saturation and give a technical solution to the inrush-like half-cycle saturated currents. Power electronic switches, opening the neutral connection to ground, are utilized to mitigate the saturation without compromising the reference ground of the transformer. The determination of the switch parameters, switching frequency, and duty cycle is performed. Details of the mitigation transient are studied by comparing simulations and laboratory experiments to validate the efficacy of the proposed power electronic switch for the mitigation of half-cycle saturated currents. In Part II, the influence of the proposed switch on the detection of ground faults is investigated. Proper parameter and operation strategies are selected to effectively detect the ground faults and ensure the fast response of protective relays. The techniques proposed are applicable to mitigate geomagnetically induced current.
机译:当HVDC传输系统以接地返回模式操作时,相邻AC系统中的变压器经常遭受半周期饱和度。在该两部分纸张中,提出了一种使用电力电子开关的有效缓解方法,这不会损害保护系统检测故障电流的能力。在第一部分中,进行研究以找到半周期饱和的物理性能,并给出浪涌的半循环饱和电流的技术方案。电力电子开关,打开与地的中性连接,用于减轻饱和度而不损害变压器的参考接地。执行开关参数,切换频率和占空比的确定。通过比较模拟和实验室实验来研究缓解瞬态的细节,以验证所提出的电力电子开关用于减轻半循环饱和电流的功效。在第二部分中,研究了所提出的接头对接地故障检测的影响。选择适当的参数和操作策略,以有效地检测接地故障并确保保护性继电器的快速响应。所提出的技术适用于减轻地磁诱导的电流。

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