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Implementation of ABS/ESC systems for light weight electric vehicle

机译:用于轻量级电动车的ABS / ESC系统的实现

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The regulatory standards concerning safety of the occupants, pedestrians & the vehicle have been made stringent in recent years. This priority of safety has led to the introduction of Antilock Braking System (ABS) and Electronic Stability Control (ESC) systems in vehicles. The presence of an electric motor, the key powertrain member in electric vehicles (EVs), makes the implementation of safety systems very effective and challenging at the same time. This is effective, since the torque response from the motor is instantaneous, aiding in ultra-low response time from & to Electronic control unit (ECU) leading to faster vehicle control. However, the challenge is the synchronization of an off-the-shelf available ABS/ESC hardware to the existing EV control architecture. In addition, low weight of the vehicle requires the control and actuators to be very fast for stable operation. The toggling of the regenerative brakes and the intervention of the ABS based on vehicle conditions needed a handful of design & testing iterations. The paper explains about ABS & ESC system implementation & its testing details in a light-weight electric vehicle.
机译:近年来,乘客,行人和车辆的安全的监管标准已经严格。这种安全的优先级导致了在车辆中引入了防姑娘制动系统(ABS)和电子稳定性控制(ESC)系统。电动机的存在,电动车辆(EVS)中的钥匙动力系元件,使得安全系统的实施非常有效和同时具有挑战性。这是有效的,因为来自电动机的扭矩响应是瞬时的,从而触及从且到电子控制单元(ECU)的超低响应时间,导致车辆控制更快。但是,挑战是将现有的ABS / ESC硬件与现有EV控制体系结构的同步同步。此外,车辆的低重量需要控制和致动器非常快速地稳定操作。基于车辆条件的传感再生制动器和ABS的干预需要少数设计和测试迭代。本文解释了ABS和ESC系统实现及其在轻型电动车辆中的测试细节。

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