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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Design and Testing of ABS for Electric Vehicles with Individually Controlled On-Board Motor Drives
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Design and Testing of ABS for Electric Vehicles with Individually Controlled On-Board Motor Drives

机译:具有独立控制板载电机驱动器的电动汽车ABS的设计和测试

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摘要

The paper introduces the results of the development of anti-lock brake system (ABS) for full electric vehicle with individually controlled near-wheel motors. The braking functions in the target vehicle are realized with electro-hydraulic decoupled friction brake system and electric motors operating in a braking mode. The proposed ABS controller is based on the direct slip and velocity control and includes several main blocks for computing of predictive (feedforward) and reactive (feedback) brake torque, wheel slip observer, slip target adaptation, and the algorithm of brake blending between friction brakes and electric motors. The functionality of developed ABS has been investigated on the HIL test rig for straight-line braking manoeuvres on different surfaces with variation of initial velocity. The obtained experimental results have been compared with the operation of baseline algorithm of a hydraulic ABS and have demonstrated a marked effect in braking performance.
机译:本文介绍了具有独立控制的近轮电动机的全电动汽车防抱死制动系统(ABS)的开发结果。目标车辆的制动功能通过电动液压解耦摩擦制动系统和以制动模式运行的电动机实现。所提出的ABS控制器基于直接滑移和速度控制,并且包括几个主要模块,用于计算预测(前馈)和无功(反馈)制动扭矩,轮滑观测器,滑移目标自适应以及摩擦制动器之间的制动混合算法和电动机。已在HIL测试台上对开发的ABS的功能进行了研究,以适应初始速度变化的不同表面上的直线制动操作。将获得的实验结果与液压ABS基线算法的操作进行了比较,并证明了在制动性能方面的显着效果。

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