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Electronic Braking System of EV And HEV - Integration of Regenerative Braking, Automatic Braking Force Control And ABS

机译:EV和HEV的电子制动系统 - 再生制动,自动制动力控制和ABS的集成

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The desirable braking system of a land vehicle is that it can stop the vehicle or reduce the vehicle speed as quickly as possible, maintain the vehicle direction stable and recover kinetic energy of the vehicle as much as possible. In this paper, an electronically controlled braking system for EV and HEV has been proposed, which integrates regenerative braking, automatic control of the braking forces of front and rear wheels and wheels antilock function together. When failure occurs in the electric system, the braking system can function as a conventional man-actuated braking system. Control strategies for controlling the braking forces on front and rear wheels, regenerative braking and mechanical braking forces have been developed. The braking energy that can be potentially recovered in typical driving cycle has been calculated. The antilock performance of the braking system has been simulated. The results show that significant amount of energy can be recovered and braking performance of the vehicle is perfect.
机译:陆地车辆的理想制动系统是它可以尽可能快地停止车辆或降低车速,从而保持车辆方向稳定并尽可能地回收车辆的动能。本文已经提出了一种用于EV和HEV的电子控制制动系统,其集成了再生制动,将前轮和后轮的制动力自动控制在一起。当在电气系统中发生故障时,制动系统可以用作传统的人致动制动系统。已经开发了控制前轮和后轮上制动力,再生制动和机械制动力的控制策略。已经计算了可以在典型的驾驶周期中潜在地回收的制动能量。已经模拟了制动系统的防锁性能。结果表明,可以回收大量能量,并且车辆的制动性能是完美的。

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