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首页> 外文期刊>Industry Applications, IEEE Transactions on >Preemptive Arc Fault Detection Techniques in Switchgear—Part III: From the Laboratory to Practical Installation
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Preemptive Arc Fault Detection Techniques in Switchgear—Part III: From the Laboratory to Practical Installation

机译:开关设备中的抢先电弧故障检测技术-第三部分:从实验室到实际安装

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摘要

The major types of slowly developing faults, which can lead to arc faults in switchgear and controlgear, such as partial discharge, arcing, and heating due to poor connections, can now be successfully detected and monitored. In parts I and II of this paper series, a detailed review of the immediate causes of arc faults, along with an overview of preignition and postignition methods for its mitigation, was presented. Various hybrid nonintrusive sensors were developed in the laboratory to implement preignition detection techniques. The major types of slowly developing electrical faults were created in the laboratory, and the sensors were employed to evaluate their performance along with an effective signal processing technique. Part III of the work is based on the successful performance of the sensors outside of laboratory conditions. Hybrid sensors have been installed in a real-world application, i.e., switchgear located in substations. This paper presents interesting results about this practical application and includes valuable discussion on the performance evaluation of different sensors, which further justifies the usefulness of the new sensors for online condition monitoring of switchgear, controlgear, and cable termination boxes. The implementation of this technology in industry may provide promising results in avoiding major accidents such as arc-flash in the switchgear and controlgear.
机译:现在,可以成功地检测和监控主要类型的缓慢发展的故障,这些故障会导致开关设备和控制设备中的电弧故障,例如局部放电,电弧和由于连接不良而引起的发热。在本系列文章的第一部分和第二部分中,详细介绍了电弧故障的直接原因,并概述了缓解该问题的点火前和点火后方法。在实验室中开发了各种混合非侵入式传感器来实施点火前检测技术。在实验室中创建了缓慢发展的电气故障的主要类型,并使用传感器来评估其性能以及有效的信号处理技术。第三部分的工作基于传感器在实验室条件之外的成功表现。混合传感器已安装在实际应用中,即位于变电站中的开关柜中。本文介绍了有关此实际应用的有趣结果,并对不同传感器的性能评估进行了有价值的讨论,这进一步证明了新型传感器在开关柜,控制柜和电缆终端盒的在线状态监测中的实用性。该技术在工业中的实施可为避免重大事故(如开关柜和控制柜中的飞弧)提供有希望的结果。

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