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Open-Circuit Fault Detection in Stranded PMSM Windings Using Embedded FBG Thermal Sensors

机译:使用嵌入式FBG热传感器检测PMSM绞线绕组中的开路故障

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摘要

Detection of winding faults in permanent magnet synchronous machines (PMSMs) with stranded winding designs remains a challenging task for conventional diagnostic techniques. This paper proposes a new sensing approach to this problem by investigating the application of dedicated electrically non-conductive and electromagnetic interference immune fiber Bragg grating (FBG) temperature sensors embedded in PMSM windings to enable winding open-circuit fault diagnosis based on observing the fault thermal signature. The final element analysis thermal and electromagnetic models of the examined practical PMSM design are first developed and used to enable the understanding of open-circuit winding fault-induced signature that can be used for effective diagnostic purposes, indicating in situ thermal excitation as an optimal diagnostic measurand. A purpose build test rig with an inverter-driven commercial PMSM instrumented with in situ FBG sensors monitoring phase winding hot spots is then used to evaluate the efficacy of the proposed diagnostic scheme. It is shown that unambiguous diagnosis and severity trending of winding open-circuit faults is enabled by the use of in situ FBG sensors. A comparison with conventional fault diagnostic technique utilizing current signal sensing and analysis is also reported, indicating the considerable advantages of the proposed monitoring scheme employing FRG sensors.
机译:对于具有绞合绕组设计的永磁同步电机(PMSM),检测绕组故障对于常规诊断技术而言仍然是一项艰巨的任务。本文通过研究嵌入在PMSM绕组中的专用非导电和电磁干扰免疫光纤布拉格光栅(FBG)温度传感器的应用,提出了一种用于解决此问题的新方法,该方法可基于观察故障热来进行绕组开路故障诊断签名。首先开发了经过检查的实际PMSM设计的最终元素分析热和电磁模型,用于理解开路绕组故障引起的信号,这些信号可用于有效的诊断目的,表明原位热激励是一种最佳诊断方法被测者。然后,使用带有逆变器驱动的商用PMSM的专用测试台,该商用PMSM配有监测相绕组热点的现场FBG传感器,以评估提出的诊断方案的有效性。结果表明,通过使用原位FBG传感器可以对绕组开路故障进行明确的诊断和趋势分析。还报道了与利用电流信号感测和分析的常规故障诊断技术的比较,表明了所提出的采用FRG传感器的监测方案的巨大优势。

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