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电动汽车差动助力转向与主动前轮转向协调控制 被引量:6
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作者 王军年 郭德东 +2 位作者 颜庭旭 assadian francis 罗正 《吉林大学学报(工学版)》 EI CAS CSCD 北大核心 2020年第3期776-783,共8页
装备差动助力转向(DDAS)系统的汽车匹配主动前轮转向(AFS)系统时,两者会相互干扰。DDAS助力时引入的横摆力偶矩会影响车辆的转向特性,反之,AFS的介入会导致转向盘转矩突变。为此,本文提出了一种差动协同主动转向(DDCAS)系统。首先,介绍... 装备差动助力转向(DDAS)系统的汽车匹配主动前轮转向(AFS)系统时,两者会相互干扰。DDAS助力时引入的横摆力偶矩会影响车辆的转向特性,反之,AFS的介入会导致转向盘转矩突变。为此,本文提出了一种差动协同主动转向(DDCAS)系统。首先,介绍了DDCAS系统的结构和动力学模型;然后,分别制定了DDAS和AFS的控制策略,分析了两系统的干扰机理,并制定了DDCAS控制策略。最后,在Matlab/Simulink与CarSim联合仿真平台上进行了典型工况的仿真分析,验证了本文控制策略的有效性。 展开更多
关键词 车辆工程 电动轮 差动助力转向 主动转向 横摆角速度增益 协调控制
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Simulation investigation of tractive energy conservation for a cornering rear-wheel-independent-drive electric vehicle through torque vectoring 被引量:5
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作者 SUN Wen WANG JunNian +2 位作者 WANG QingNian assadian francis FU Bo 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2018年第2期257-272,共16页
Although electric vehicle fully exhibits its comparative merits of energy conservation and environmental friendliness, further improvement of its traction energy efficiency lacks comprehensive investigations in the pa... Although electric vehicle fully exhibits its comparative merits of energy conservation and environmental friendliness, further improvement of its traction energy efficiency lacks comprehensive investigations in the past. In this paper, the effect of the torque vectoring on traction energy conservation during cornering for a rear-wheel-independent-drive electric vehicle is investigated.Firstly, turning resistance coefficient and energy conservation mechanism of torque vectoring are derived from the single track dynamic model. Next, an optimal torque vectoring control strategy based on genetic algorithm is proposed, with the consideration of the influence of the operation-point change of the in-wheel motors, to find out the best torque vectoring ratio offline. Finally,various simulation tests are conducted to validate the energy conservation effect after Simulink modelling. The results verify that though the optimization of the operating region of the motors is the main part for tractive energy conservation, the contribution of torque vectoring itself can reach up to 1.7% in some typical cases. 展开更多
关键词 electric vehicle (EV) independent drive cornering resistance torque vectoring energy saving optimization
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