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Optimal Control based Calibration of Rule-Based Energy Management for Parallel Hybrid Electric Vehicles

机译:基于最优控制的基于规则的混合动力电动汽车能量管理标定

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In this paper a rule-based energy management for parallel hybrid electric vehicles (HEVs) is presented, which is based on the principles describing the optimal control behavior. Therefore we first show the general relations that can be used to describe the optimal limit of electric driving as well as the optimal torque split among the two propulsion systems. Subsequently these relations are employed to derive maps, which represent the optimal behavior depending on several input parameters. These maps are then used as inputs for the rules in the proposed energy management. This not only makes it possible to automatically calibrate the rule-based controller but also gives the optimal control in every driving situation. Given it is not fuel-efficient to turn the internal combustion engine (ICE) on or off for short intervals, it is further shown how this approach allows to adjust the established limit for electric driving by additional rules. In real-world driving conditions this extension results in a significant improvement compared to other energy management approaches. Finally, the performance of the proposed energy management is shown in a number of simulations in various real-world driving cycles.
机译:在本文中,提出了一种基于规则的并联混合电动汽车(HEV)的能量管理,该能量管理基于描述最佳控制行为的原理。因此,我们首先显示可用于描述电动驱动的最佳极限以及两个推进系统之间的最佳转矩分配的一般关系。随后,将这些关系用于导出映射,这些映射表示取决于几个输入参数的最佳行为。然后将这些图用作拟议能源管理中规则的输入。这不仅可以自动校准基于规则的控制器,而且可以在每种驾驶情况下提供最佳控制。鉴于短时打开或关闭内燃机(ICE)并非省油,因此进一步说明了该方法如何允许通过附加规则来调整电动行驶的既定限制。与其他能源管理方法相比,在实际驾驶条件下,此扩展可带来显着改善。最后,在各种实际驾驶循环中的许多模拟中显示了所提出的能量管理的性能。

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