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Hierarchical Control Strategy for the Cooperative Braking System of Electric Vehicle

机译:电动汽车协同制动系统的分层控制策略

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摘要

This paper provides a hierarchical control strategy for cooperative braking system of an electric vehicle with separated driven axles. Two layers are defined: the top layer is used to optimize the braking stability based on two sliding mode control strategies, namely, the interaxle control mode and signal-axle control strategies; the interaxle control strategy generates the ideal braking force distribution in general braking condition, and the single-axle control strategy can ensure braking safety in emergency braking condition; the bottom layer is used to maximize the regenerative braking energy recovery efficiency with a reallocated braking torque strategy; the reallocated braking torque strategy can recovery braking energy as much as possible in the premise of meeting battery charging power. The simulation results show that the proposed hierarchical control strategy is reasonable and can adapt to different typical road surfaces and load cases; the vehicle braking stability and safety can be guaranteed; furthermore, the regenerative braking energy recovery efficiency can be improved.
机译:本文为具有分离的驱动轴的电动车辆的协作制动系统提供了分层控制策略。定义了两层:顶层基于两个滑动模式控制策略,即交联控制模式和信号轴控制策略来优化制动稳定性;互联网控制策略在一般制动条件下产生理想的制动力分布,单轴控制策略可以确保在紧急制动条件下制动安全性;底层用于通过重新划分的制动扭矩策略最大化再生制动能量回收效率;在满足电池充电功率的前提下,重新划分的制动扭矩策略尽可能地恢复制动能量。仿真结果表明,建议的分层控制策略是合理的,可以适应不同典型的道路表面和负载案例;可以保证车辆制动稳定性和安全性;此外,可以提高再生制动能量回收效率。

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