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首页> 外文期刊>Trends in Ecology & Evolution >Mitigation of Half-Cycle Saturation of Adjacent Transformers During HVDC Monopolar Operation-Part II: Detecting Zero-Sequence Fault Currents
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Mitigation of Half-Cycle Saturation of Adjacent Transformers During HVDC Monopolar Operation-Part II: Detecting Zero-Sequence Fault Currents

机译:HVDC单极操作期间相邻变压器的半周期饱和 - 第二部分:检测零序故障电流

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摘要

This two-part paper presents a method to mitigate half-cycle saturation of transformers caused by monopolar operation of neighboring HVDC transmission lines while keeping the ability to detect the zero-sequence fault currents (ZSFC) when ground faults occur. Part I of this paper has presented the mitigation principles and device design of the proposed neutral current blocking switch. In Part II, the performance of the proposed method to permit the circulation of zero-sequence current is investigated. An operation strategy is proposed that simultaneously allows the mitigation of half-cycle saturation and the detection of ZSFC. Simulations on a widely-used 500 kV system show that the proposed mitigation technique, using a sub-synchronous switching frequency (no higher than 30 Hz), can effectively mitigate the half-cycle saturation while allowing the circulation of ZSFC. The novel mitigation method exploits the characteristic differences between half-cycle saturation (dc) and asymmetric faults (ac). The method provides an implementable solution to the dc-bias phenomenon because it delivers concurrently dc-bias mitigation, minimal impact on ground fault detection, and no switching stresses on the power electronic switches. The proposed technique can also be applied to the mitigation of geomagnetically induced currents.
机译:这款两部分纸张呈现了一种方法来减轻由相邻HVDC传输线的单极运行引起的变压器的半周期饱和度,同时在发生接地故障时保持检测零序故障电流(ZSFC)的能力。本文的第I部分提出了所提出的中性电流阻塞开关的缓解原理和装置设计。在第二部分中,研究了允许允许零序电流循环循环的方法的性能。提出了一种操作策略,同时允许缓解半周期饱和度和ZSFC的检测。广泛使用的500 kV系统的模拟表明,使用子同步开关频率(不高于30Hz)的提出的缓解技术可以有效地减轻半周期饱和度,同时允许ZSFC的循环。新颖的缓解方法利用半周期饱和度(DC)和非对称故障(AC)之间的特征差异。该方法提供了直流偏置现象的可实现的解决方案,因为它可以递送同时的DC - 偏置缓解,对接地故障检测的影响最小,并且电力电子开关上没有切换应力。所提出的技术也可以应用于降低地磁诱导的电流的缓解。

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