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New Preemptive Arc-Fault Detection Techniques in Medium-Voltage Switchgear and Motor Controls

机译:中压开关设备和电动机控制中的新型先发性电弧故障检测技术

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摘要

For forest-products-based industries, the significant benefits of preemptive arc-flash protection and online condition monitoring of electrical equipment are not well known. This paper provides a summary of the research surrounding the development and testing of new advanced sensor technologies for this purpose. This paper builds on the authors' initial research and their supporting publications providing more extensive and detailed field measurements supporting the preemptive detection of significant defects that can lead to an arc-flash event. The early detection of impending faults and the prediction of future arc-flash occurrences in medium voltage (MV) switchgears and motor control centers (MCCs) can be very beneficial. The development of new sensor technologies both for partial discharge measurement and thermal detection are discussed and evaluated. The two most common noncontact causes leading to an arc-flash event in MV switchgears and MCCs are insulation degradation and thermal stresses. This paper will highlight very detailed results measured under both of these conditions in laboratory and actual installed conditions. An effective signal processing method, which is used for extracting the essential indication data and for the integration of this system into existing protection programmable logic control or supervisory control and data acquisition (SCADA) systems, is outlined.
机译:对于以林产品为基础的行业,人们尚不了解先发制人的电弧闪光保护和电气设备在线状态监视的显着优势。本文提供了有关为此目的开发和测试新的先进传感器技术的研究摘要。本文基于作者的初步研究及其支持的出版物,提供了更广泛,更详细的现场测量结果,支持先发检测可导致电弧闪光事件的重大缺陷。在中压(MV)开关设备和电动机控制中心(MCC)中及早发现即将发生的故障以及预测将来发生的弧光会非常有益。讨论并评估了用于局部放电测量和热检测的新传感器技术的发展。导致MV开关设备和MCC发生飞弧事件的两个最常见的非接触原因是绝缘退化和热应力。本文将重点介绍在实验室和实际安装条件下这两种条件下测得的非常详细的结果。概述了一种有效的信号处理方法,该方法用于提取基本指示数据并将该系统集成到现有的保护可编程逻辑控制或监督控制和数据采集(SCADA)系统中。

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