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A non-intrusive power system arcing fault location system utilising the VLF radiated electromagnetic energy

机译:一种非侵入式电源系统电弧故障定位系统利用VLF辐射电磁能

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This paper describes research being conducted by the Power & Energy Systems Group at the University of Bath into a novel technique for monitoring the condition of transmission and sub-transmission circuitry using the electromagnetic radiated energy emitted from a power system arcing fault, together with the propagation effects of very low frequency (VLF) radio waves. The emission of an atmospheric radio wave, collectively known as a sferic, from a power system arcing fault will be characterised and is similar to the way a lightning strike induces a sferic. The paper will describe the hardware infrastructure necessary to be able to monitor the condition of transmission and sub-transmission circuitry, together with the real-time intelligent algorithm which enables discrimination between power system arcing faults and other sources of impulsive radio noise in the VLF spectrum. The technique described in this paper is not limited to monitoring a specific line or circuit as no physical connection is required to the system instead the described system monitors a geographic area and therefore it can be economically used on sub-transmission circuitry.
机译:本文介绍了由浴缸大学的电力和能量系统组进行的研究进入了一种新颖的技术,用于监控传输和子传输电路的条件,使用电源系统电弧故障发出的电磁辐射能量以及传播非常低频(VLF)无线电波的影响。从电力系统电弧故障的表征和统称为棘手的大气无线电波的排放将表征,并且类似于雷击引起棘手的方式。本文将描述能够监视传输和子传输电路条件所需的硬件基础设施,以及能够在VLF频谱中实现电力系统电弧故障和其他脉冲无线电噪声的区别的实时智能算法。本文描述的技术不限于监视特定的线路或电路,因为该系统不需要物理连接,而是所描述的系统监视地理区域,因此可以在子传输电路上经济地使用。

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