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Feasibility study of embedded FBG thermal sensing use for monitoring electrical fault-induced thermal excitation in random wound coils

机译:嵌入式FBG热感测用于监测随机绕线线圈中的电气故障引起的热激励的可行性研究

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摘要

This paper reports an experimental feasibility study of the potential for using Fibre Bragg Grating (FBG) thermal sensing technology for electrical fault detection in random wound coils. The study is performed on prototype test coils housed in a purpose built steel core section. The FBG thermal sensors are embedded between copper conductors in multiple positions within the coil structure and in close proximity of the known hot spots of interest. The examined coils are designed to enable emulation of hot spots representative of those that would be expected at the outset of winding fault events. A series of experiments were separately conducted in order to characterise the potential of coil internal thermal stress monitoring to provide recognition of a developing winding fault. To this end, winding fault scenarios with different severity levels of inter-turn fault are experimentally examined. The reported findings demonstrate the potential of the proposed in-situ thermal sensing scheme to enable monitoring and recognition of coil internal thermal stress induced at various stages of emulated electrical fault.
机译:本文报告了使用光纤布拉格光栅(FBG)热感测技术检测随机绕线线圈中的电气故障的潜力的实验可行性研究。这项研究是针对放置在专用钢芯部分中的原型测试线圈进行的。 FBG热传感器嵌在铜导体之间,位于线圈结构内的多个位置,并且紧邻已知的关注热点。所检查的线圈设计为能够仿真热点,该热点代表在绕组故障事件开始时所预期的热点。分别进行了一系列实验,以表征线圈内部热应力监控的潜力,以识别正在出现的绕组故障。为此,实验检查了具有不同严重度的匝间故障的绕组故障场景。报告的发现证明了所提出的原位热感测方案的潜力,该方案能够监视和识别在模拟电气故障的各个阶段引起的线圈内部热应力。

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