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Regenerative Braking Control Strategy of Electric-Hydraulic Hybrid (EHH) Vehicle

机译:电动液压混合动力汽车的再生制动控制策略

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A novel electric-hydraulic hybrid drivetrain incorporating a set of hydraulic systems is proposed for application in a pure electric vehicle. Models of the electric and hydraulic components are constructed. Two control strategies, which are based on two separate rules, are developed; the maximum energy recovery rate strategy adheres to the rule of the maximization of the braking energy recovery rate, while the minimum current impact strategy adheres to the rule of the minimization of the charge current to the battery. The simulation models were established to verify the effects of these two control strategies. An ABS (Anti-lock Braking System) fuzzy control strategy is also developed and simulated. The simulation results demonstrate that the developed control strategy can effectively absorb the braking energy, suppress the current impact, and assure braking safety.
机译:提出了一种结合有一套液压系统的新颖的电动液压混合动力传动系统,以用于纯电动车辆。构造了电动和液压组件的模型。制定了基于两个独立规则的两种控制策略。最大能量回收率策略遵循制动能量回收率最大化的规则,而最小电流影响策略则遵循使电池充电电流最小的规则。建立仿真模型以验证这两种控制策略的效果。还开发并仿真了ABS(防抱死制动系统)模糊控制策略。仿真结果表明,所开发的控制策略能够有效吸收制动能量,抑制电流冲击,保证制动安全。

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