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The control strategy of optimal brake energy recovery for a parallel hydraulic hybrid vehicle

机译:并联液压混合动力汽车最佳制动能量回收的控制策略

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The purpose of this paper is to develop a control strategy of optimal brake energy recovery for a parallel hydraulic hybrid vehicle, in which the shifting schedule of the torque coupler and the distribution of the braking force are the most important impact factors based on a detailed study of braking characteristics. The two implementable schemes are compared to achieve a better shifting schedule for the torque coupler. An optimal distributive curve and the corresponding models of braking forces are also established, which not only avoids the situation of rear wheels locking earlier than front wheels but also determines the distributive ratio of the braking forces in each case. The simulation models of the vehicle are developed on the basis of the software, Advisor 2002, which is validated by the road tests. The simulation results indicate that 42.7% of the brake energy can be recaptured in the hydraulic hybrid vehicle, whereas 41.6% of the traction energy is wasted in the braking of a conventional vehicle. Therefore, the control strategy of optimal energy recovery is very effective in improving the efficiency of brake energy recovery in the hydraulic hybrid vehicle.
机译:本文的目的是为并联液压混合动力汽车开发最佳制动能量回收的控制策略,其中基于详细研究,扭矩耦合器的换档时间表和制动力的分配是最重要的影响因素。制动特性。比较了两种可实现的方案,以实现扭矩耦合器的更好换档计划。还建立了最佳的分配曲线和相应的制动力模型,这不仅避免了后轮比前轮更早锁定的情况,而且分别确定了制动力的分配比。车辆的仿真模型是在Advisor 2002软件的基础上开发的,该软件已通过路试验证。仿真结果表明,在液压混合动力汽车中可以重新获得46.7%的制动能量,而在传统车辆的制动中则浪费了41.6%的牵引能量。因此,最佳能量回收的控制策略对于提高液压混合动力车辆的制动能量回收效率非常有效。

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