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Regenerative braking strategy for hybrid electric vehicles based on regenerative torque optimization control

机译:基于再生转矩优化控制的混合动力汽车再生制动策略

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摘要

A regenerative torque distribution (RTD) strategy is proposed to make maximum use of the braking energy to improve fuel economy for hybrid electric vehicles, in which the available regenerative braking force, the demand of the front wheel braking force, and the front wheel lock-up force are all explicitly taken into account. The actual front wheel cylinder pressure, which is reduced by the amount of the actual regenerative braking force, is supplied from the electronic hydraulic brake system. An emulated engine compression braking (EECB) is suggested during coasting, and the electric motor provides a negative torque to emulate the internal combustion engine drag torque to charge the ultracapacitor. In addition, a regenerative torque optimization strategy (RTO) is implemented to maximize the actual electric power recuperated by the ultracapacitor. The simulation results show that both the RTD with RTO and the EECB with RTO are able to offer improved ultracapacitor voltages. [PUBLICATION ABSTRACT]
机译:提出了一种再生扭矩分配(RTD)策略,以最大程度地利用制动力,以提高混合动力电动汽车的燃油经济性,其中可用的再生制动力,前轮制动力的需求以及前轮锁止力-明确考虑了向上力量。由电子液压制动系统提供的实际前轮制动缸压力会降低实际的再生制动力。建议在滑行期间使用模拟发动机压缩制动(EECB),并且电动机提供负扭矩来模拟内燃机的拖动扭矩以给超级电容器充电。此外,还实施了再生扭矩优化策略(RTO),以使超级电容器回收的实际电功率最大化。仿真结果表明,带有RTO的RTD和带有RTO的EECB都能够提供改进的超级电容器电压。 [出版物摘要]

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