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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >A Compact Error Management Algorithm to Minimize False-Alarm Rate of Motor/Generator Faults in (Hybrid) Electric Vehicles
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A Compact Error Management Algorithm to Minimize False-Alarm Rate of Motor/Generator Faults in (Hybrid) Electric Vehicles

机译:最小化(混合动力)电动汽车电动机/发电机故障误报率的紧凑型错误管理算法

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摘要

This paper addresses an emerging reliability and safety requirement for more electric transportation systems by proposing an on-board diagnostics plug-in tool. For this purpose, a compact diagnostic algorithm is presented using an advanced speed feedback error management technique for traction motor and generator faults which is one of the most critical parts of the vehicle powertrain. The speed measurement accuracy can be degraded for various reasons such as: sensor issues, vehicle vibration, hardware tolerances, and environmental impacts like temperature, moisture, and electromagnetic interferences. Although the speed feedback errors within an acceptable level can be tolerated by most of the drive systems, the accuracy of speed measurement is critical for the reliability of fault diagnosis. The major reason behind this fact is the frequency of fault signature in the spectrum is primarily determined using the motor speed. It is shown how the reliability of a motor fault diagnosis decision can significantly be improved under erroneous speed feedback conditions by using the developed effective error localization and coarse-to-fine detection technique. The proposed scheme is implemented through effective strategies to minimize computational complexity and memory occupancy in every step of signal processing according to manufacturers' strict cost limitation.
机译:本文通过提出一种车载诊断插件工具来满足更多电力运输系统对可靠性和安全性的新兴要求。为此,提出了一种紧凑的诊断算法,该算法使用先进的速度反馈错误管理技术来处理牵引电动机和发电机故障,这是车辆动力总成中最关键的部分之一。速度测量精度可能由于各种原因而降低,例如:传感器问题,车辆振动,硬件公差以及诸如温度,湿度和电磁干扰等环境影响。尽管大多数驱动系统都可以容忍在可接受水平内的速度反馈错误,但是速度测量的准确性对于故障诊断的可靠性至关重要。此事实背后的主要原因是频谱中故障信号的频率主要由电动机速度确定。通过使用已开发的有效错误定位和从粗到精的检测技术,可以证明在错误的速度反馈条件下如何显着提高电动机故障诊断决策的可靠性。通过根据制造商严格的成本限制,在信号处理的每个步骤中将计算复杂度和内存占用降至最低的有效策略,可以实现所提出的方案。

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