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RAPID OPTIMIZATION OF MULTIPLE-PLANETARY-GEAR POWER-SPLIT HYBRID POWERTRAINS

机译:多行星齿轮动力混合动力装置的快速优化

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In recent years, clutches have been used to create multi-mode power-split hybrid electric vehicles (HEVs). Designing an HEV for optimal performance is computationally intensive because of the enormous design space. For single planetary gear (PG) or a double-PG hybrid powertrains, the design with the best fuel economy and launching performance can be identified through exhaustive search. Exhaustive search for a hybrid powertrain with 3PGs is computationally expensive, because of the astronomical number of design candidates. To address the design problem with extremely large design space, a rapid structure optimization method is proposed, which is based on combining different operating modes. A case study compares several different schemes against the results of the exhaustive search. The results show that the proposed mode combination method can identify almost 90% of the best designs. The proposed method shows great potential when applied to hybrid systems with three or more PGs.
机译:近年来,离合器已用于制造多模式动力分配混合动力电动汽车(HEV)。由于巨大的设计空间,为获得最佳性能而设计HEV的计算量很大。对于单行星齿轮(PG)或双PG混合动力总成,可以通过详尽搜索来确定具有最佳燃油经济性和发射性能的设计。由于设计候选方案的天文数字,穷举搜索具有3PG的混合动力总成在计算上是昂贵的。针对设计空间过大的设计问题,提出了一种基于组合不同工作模式的快速结构优化方法。案例研究将几种不同的方案与详尽搜索的结果进行了比较。结果表明,提出的模式组合方法可以识别近90%的最佳设计。当应用于具有三个或更多PG的混合系统时,所提出的方法显示出巨大的潜力。

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