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Reliable EMF-Sensor-Fusion-Based Antilock Braking System for BLDC Motor In-Wheel Electric Vehicles

机译:BLDC电机轮毂电动汽车中基于EMF-传感器-融合的可靠防抱死制动系统

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摘要

The design of current in-wheel electric vehicles (EVs) is predominantly based on using brushless dc (BLDC) motors as the propulsion system of the vehicle. The in-wheel design requires the juxtaposition of several powerful electromagnetic components that generate significant amount of electrical disturbances at each vehicle wheel and subsequently demands robustness to externally induced faults for its associated antilock braking system (ABS). In this paper, a sensor-fusion-based wheel speed measurement system is proposed for ABS in brushless in-wheel EVs. The objective is to exploit readily available back electromotive force (EMF) signals of the BLDC motor of an in-wheel hub as speed sensors (referred to as EMF-sensors in this paper) to improve the reliability of the associated ABS. The proposed methodology is based on fusion of wheel speed estimates acquired from the ABS sensor with their counterparts acquired from the EMF-sensors using a variety of fusion operators such as exponential class of ordered weighted averaging. The proposed design was extensively tested using actual ABS hardware and motors. Our experimental results showed that the wheel speed measurement accuracy of the proposed system is up to 70 higher compared to that of conventional vehicles. In addition, the proposed method is robust to ABS sensor failures such as a short-circuit fault. The method was also compared with brushed dc motor in-wheel EVs and experimental results showed significant improvements in accuracy and robustness.
机译:当前的轮毂电动车辆(EV)的设计主要基于使用无刷直流(BLDC)电动机作为车辆的推进系统。轮内设计需要将多个强大的电磁组件并置在一起,这些电磁组件会在每个车轮上产生大量的电气干扰,因此,对于与其相关联的防抱死制动系统(ABS)的外部感应故障,需要具有鲁棒性。本文提出了一种基于传感器融合的轮速测量系统,用于无刷轮式电动汽车中的ABS。目的是利用轮毂内BLDC电动机的随时可用的反电动势(EMF)信号作为速度传感器(在本文中称为EMF传感器),以提高相关ABS的可靠性。所提出的方法基于使用各种融合算子(例如指数级有序加权平均)将从ABS传感器获取的车轮速度估计值与从EMF传感器获取的车轮速度估计值进行融合。使用实际的ABS硬件和电机对建议的设计进行了广泛的测试。我们的实验结果表明,与常规车辆相比,该系统的车轮速度测量精度最高可提高70。另外,所提出的方法对于诸如短路故障的ABS传感器故障是鲁棒的。还将该方法与有刷直流电机轮毂电动汽车进行了比较,实验结果表明,该方法在准确性和鲁棒性方面有显着提高。

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