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Integral Sensor Fault Detection and Isolation for Railway Traction Drive

机译:铁路牵引传动系统集成传感器故障检测与隔离

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摘要

Due to the increasing importance of reliability and availability of electric traction drives in Railway applications, early detection of faults has become an important key for Railway traction drive manufacturers. Sensor faults are important sources of failures. Among the different fault diagnosis approaches, in this article an integral diagnosis strategy for sensors in traction drives is presented. Such strategy is composed of an observer-based approach for direct current (DC)-link voltage and catenary current sensors, a frequency analysis approach for motor current phase sensors and a hardware redundancy solution for speed sensors. None of them requires any hardware change requirement in the actual traction drive. All the fault detection and isolation approaches have been validated in a Hardware-in-the-loop platform comprising a Real Time Simulator and a commercial Traction Control Unit for a tram. In comparison to safety-critical systems in Aerospace applications, Railway applications do not need instantaneous detection, and the diagnosis is validated in a short time period for reliable decision. Combining the different approaches and existing hardware redundancy, an integral fault diagnosis solution is provided, to detect and isolate faults in all the sensors installed in the traction drive.
机译:由于在铁路应用中电力牵引驱动器的可靠性和可用性日益重要,因此,故障的早期检测已成为铁路牵引驱动器制造商的重要关键。传感器故障是故障的重要来源。在不同的故障诊断方法中,本文提出了一种用于牵引传动中传感器的整体诊断策略。这种策略由用于直流(DC)链路电压和悬链电流传感器的基于观察者的方法,用于电动机电流相位传感器的频率分析方法以及用于速度传感器的硬件冗余解决方案组成。它们都不要求在实际牵引驱动器中进行任何硬件更改要求。所有故障检测和隔离方法均已在包含实时模拟器和商用电车牵引力控制单元的硬件在环平台中得到验证。与航空航天应用中的安全关键系统相比,铁路应用不需要即时检测,并且诊断可以在短时间内得到验证,从而可以做出可靠的决策。结合了不同的方法和现有的硬件冗余,提供了完整的故障诊断解决方案,以检测和隔离牵引传动中安装的所有传感器中的故障。

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