首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Optimization of control strategy for regenerative braking of an electrified bus equipped with an anti-lock braking system
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Optimization of control strategy for regenerative braking of an electrified bus equipped with an anti-lock braking system

机译:配备防抱死制动系统的电动客车的再生制动控制策略的优化

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This paper mainly focuses on the regenerative braking control of an electrified bus equipped with an anti-lock braking system (ABS). The regenerative braking works simultaneously with a pneumatic ABS, thus liberating the remaining energy of the vehicle while its wheels tend to lock under an extreme brake circumstance. Based on one representative pneumatic ABS strategy and optimum control theory, the optimization for regenerative braking control is proposed, in which the frictional and regenerative brake forces are controlled integrally to obtain maximal available adhesion. The simulation results indicate that brake stability and performance on different roads profit from the optimization. Hardware-in-the-loop (HIL) tests are accomplished on the pneumatic braking system of an electrified bus. HIL tests validate the results of simulation and guarantee the advantage and reliability of the optimization. The adaptability of optimization to hardware and software of the brake controller is also ensured. The field in which further research could be carried out is proposed.
机译:本文主要关注配备了防抱死制动系统(ABS)的电动客车的再生制动控制。再生制动与气动ABS同时工作,从而释放了车辆的剩余能量,而车轮在极端的制动情况下往往会锁死。基于一种代表性的气动ABS策略和最优控制理论,提出了一种再生制动控制的优化方法,其中,摩擦力和再生制动力被整体控制,以获得最大的附着力。仿真结果表明,优化可以提高不同道路的制动稳定性和性能。硬件在环(HIL)测试是在电气总线的气动制动系统上完成的。 HIL测试验证了仿真结果,并保证了优化的优势和可靠性。还确保了对制动控制器的硬件和软件的优化适应性。提出了可以进行进一步研究的领域。

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