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Adaptive regenerative braking control in severe cornering for guaranteeing the vehicle stability of fuel cell hybrid electric vehicle

机译:严重转弯时的自适应再生制动控制,以确保燃料电池混合动力汽车的车辆稳定性

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Front-wheel-drive electric vehicle has only 1 electric motor which is connected to the front drive axle. With this system constraint, regenerative braking by using an electric motor can be only applied on front wheels symmetrically. Additional mechanical friction braking can be independently applied on each of all wheels using brake by wire such as EMB (Electro-Mechanical Brake). During severe cornering with braking, excessive regenerative braking force distribution to the front axle for improving the fuel economy can cause the vehicle to approach its handling limit, i.e., if the front tires saturate first, the vehicle may plow out of the curve and is called to limit understeer. When the vehicle comes in a danger of crossing the limit, adaptive regenerative braking controller engages, assisting the driver to guarantee the vehicle stability. Controller can distribute an optimal regenerative brake torque and additional mechanical friction brake torques in order to prevent loss of control for the vehicle. Carsim™ software is used to verify the effectiveness of the proposed controller.
机译:前轮驱动电动汽车只有1个电动机连接到前驱动桥。在这种系统约束下,使用电动机的再生制动只能对称地施加在前轮上。附加的机械摩擦制动可以通过线制动(例如EMB(机电制动))独立地应用到所有车轮上。在严重的转弯制动过程中,过多的再生制动力分配给前轴以改善燃油经济性,可能会导致车辆接近其操作极限,即,如果前轮胎首先饱和,则车辆可能会驶出弯道并被称为限制转向不足。当车辆有超过极限的危险时,自适应再生制动控制器将接合,以协助驾驶员确保车辆的稳定性。控制器可以分配最佳的再生制动扭矩和其他机械摩擦制动扭矩,以防止车辆失控。 Carsim™软件用于验证所提出控制器的有效性。

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