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A Near-Optimal Power Management Strategy for Rapid Component Sizing of Multimode Power Split Hybrid Vehicles

机译:一种用于多模式功率分配混合动力汽车的快速零件定型的近乎理想的功率管理策略

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摘要

In the design of hybrid vehicles, it is important to identify proper component sizes along with the optimal control. When the design search space is large, exhaustive optimal control strategies, such as dynamic programming (DP) is too time consuming to be used. Instead, a near-optimal method that is orders of magnitude faster than DP is needed. One such near-optimal method is developed and presented in this paper. This method is applied to identify the optimal powertrain parameters of all power-split hybrid configurations utilizing a single planetary gear. There are 12 possible configurations, six input and output splits, and each configuration has up to four modes. Based on the analysis of the efficiency of powertrain components of the four modes, and the power-weighted efficiency concept, we show that the computation time can be reduced by a factor of 10 000 without consequential performance compromise, compared with the DP approach. The optimal design of each configuration is analyzed and presented.
机译:在混合动力汽车的设计中,重要的是确定合适的组件尺寸以及最佳控制。当设计搜索空间很大时,详尽的最佳控制策略(例如动态编程(DP))将非常耗时,无法使用。相反,需要一种比DP快几个数量级的近似最佳方法。本文提出并提出了一种这样的最佳方法。该方法适用于识别使用单个行星齿轮的所有动力分配混合动力配置的最佳动力总成参数。有12种可能的配置,六个输入和输出拆分,每个配置最多具有四个模式。基于对四种模式的动力总成组件的效率分析以及功率加权效率概念,我们表明与DP方法相比,计算时间可以减少10000倍,而不会因此而降低性能。分析并提出了每种配置的最佳设计。

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