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Skid control of small electric vehicle (Effect of the regenerative braking force to the hysteresis of friction brake force)

机译:小型电动汽车的打滑控制(再生制动力对摩擦制动力滞后的影响)

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This paper proposed a new simulation model of skid control for a small electric vehicle that uses a hydraulic-mechanical hybrid brake system. In this research, we combined a hydraulic-mechanical hybrid brake system with an anti-lock braking system (ABS) and regenerative brake control. Before we can determine the ABS and regenerative brake control method, we must investigate the effect of the hysteresis on the control of the braking pressure and regenerative braking force. We have done the experiment to measure the inertial moment of the rear tire (in-wheel motor was attached) and the front tire (in-wheel motor was not attached) because it affects the hysteresis characteristics. The effect of the hysteresis of friction force for a small electric vehicle during braking on dry asphalt and icy road was calculated by MATLAB/Simulink.
机译:本文提出了一种新的液压-机械混合制动系统的小型电动汽车防滑控制仿真模型。在这项研究中,我们将液压机械混合制动系统与防抱死制动系统(ABS)和再生制动控制相结合。在确定ABS和再生制动控制方法之前,我们必须研究磁滞对制动压力和再生制动力控制的影响。我们已经进行了测量后轮胎(安装了轮毂电机)和前轮胎(未安装轮毂电机)的惯性矩的实验,因为这会影响磁滞特性。通过MATLAB / Simulink计算了小型电动汽车在干燥沥青和冰冷路面上制动过程中摩擦力的滞后影响。

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