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Mathematical Methods Applied to Economy Optimization of an Electric Vehicle with Distributed Power Train System

机译:具有分布式动力传动系统的电动汽车经济优化的数学方法

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摘要

This research presents mathematical methods to develop a high-efficiency power train system for a microelectric vehicle (MEV). First of all, to get the optimal ratios of a two-speed gearbox, the functional relationship of energy consumption and transmissions is established using the design of experiment (DOE) and min-max fitting distance methods. The convex characteristic of the model and the main and interactive effects of transmissions on energy consumption are revealed and hill-climbing method is adopted to search the optimal ratios. Then, to develop an efficient and real-time drive strategy, an optimization program is proposed including shift schedule, switch law, and power distribution optimization. Particularly, to construct a mathematical predictive distribution model, firstly Latin hypercube design (LHD) method is adopted to generate random and discrete operations of the MEV; secondly the optimal power distribution coefficients under various LHD points are confirmed based on offline genetic algorithm (GA); then Gauss radial basis function (RBF) is utilized to solve the low-precision problem in polynomial model. Finally, simulation verifications of the optimized scheme are carried out. Results show that the proposed mathematical methods for the optimizations of transmissions and drive strategy are able to establish a high-efficiency power train system.
机译:该研究提出了用于为微电路(MEV)的高效电力列车系统开发高效动力传动系统的数学方法。首先,为了获得双速变速箱的最佳比率,使用实验(DOE)和最小最大拟合距离方法的设计来建立能量消耗和传输的功能关系。模型的凸起特征以及传输对能量消耗的主要和交互式效果,并采用山攀爬方法来搜索最佳比率。然后,为了开发一种有效和实时的驱动策略,提出了一种优化程序,包括换档时间表,交换法和配电优化。特别地,为了构建数学预测分布模型,首先采用了拉丁超立体设计(LHD)方法来产生MEV的随机和离散操作;其次,基于离线遗传算法(GA)确认各种LHD点下的最佳配电系数;然后利用高斯径向基函数(RBF)来解决多项式模型中的低精度问题。最后,执行优化方案的仿真验证。结果表明,用于优化传输和驱动策略的所提出的数学方法能够建立高效动力传动系统。

著录项

  • 作者

    Binbin Sun; Song Gao; Chao Ma;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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