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轮毂液驱系统辅助驱动及再生制动控制与仿真
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Control and Simulation of Auxiliary Drive and Regenerative Brakefor Hydraulic Hub-motor Hybrid System
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    摘要:

    在传统后驱重型车辆传动系统的基础上,加入液压泵、轮毂液压马达、蓄能器等装置形成一种轮毂液压混合动力系统,可实现基于蓄能器的辅助驱动和再生制动功能.首先,基于整车最佳滑转效率目标设计蓄能器放液阀流量控制器,实现车辆前后轮驱动力协调控制;其次,根据加速踏板开度、制动踏板开度、蓄能器压力等反馈信号进行综合判断,制定车辆各模式切换规则,集成整车辅助驱动与再生制动控制算法;最后,利用MATLAB/Simulink与AMESim联合仿真平台,利用实车试验工况数据作为仿真输入,验证控制算法有效性并分析系统性能.结果显示,该轮毂液压混合动力系统各工作模式可以实现协调切换,车辆的动力性与经济性明显提高,与原传统重型车相比节油率达到10.5%,同时在不同附着路面车辆爬坡度提升10%~40%.

    Abstract:

    By adding a hydraulic variable pump,two hub motors and an accumulator to a traditional rear-drive heavy vehicle,a new hydraulic hub-motor hybrid system was built,and the auxiliary drive and regenerative braking can be realized based on accumulator. Firstly,the flow controller of accumulator bleeder valve was designed based on the vehicle optimum slip efficiency to achieve coordinating control of vehicle driving force. And then,according to synthetic judgment of the feedback signals for the opening of the accelerator pedal,the opening of the brake pedal and the accumulator pressure,the driving and braking mode switching rules were divided. Moreover,the auxiliary driving and regenerative braking control strategy was developed. Finally,the control algorithm was simulated at the test driving cycle of prototype vehicle by co-simulation platform of MATLAB/Simulink and AMESim. According to the simulation results at the test driving cycle of prototype vehicle,the coordinated switch of operation mode was realized,and the vehicle power performance and fuel economy were obviously improved. Compared with the traditional trucks,the ratio of oil saving is up to 10.5%,and the maximum grade ability is increased by 10%~40% at different adhesion coefficient road.

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曾小华,李广含,宋大凤,李胜,李高志,李连强.轮毂液驱系统辅助驱动及再生制动控制与仿真[J].湖南大学学报:自然科学版,2017,44(10):9~16

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  • 在线发布日期: 2017-10-30
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