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Shifting Energy Based Optimization for All-Electric Vehicle Equipped with Electric-Mechanical Continuously Variable Transmission

机译:电动无级变速器的全电动汽车基于换能的优化

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摘要

The electric-mechanical continuously variable transmission which is driven by electric motor is a perfect type of transmission for electric vehicle. In this paper, the first objective is to address recent patents on the configuration of electric-mechanical continuously variable transmission. The second objective is optimization of the energy consumption of all-electric vehicle equipped with electric- mechanical continuously variable transmission. Global optimization of electric vehicle equipped with EMCVT running in New European Driving Cycle has been carried out based on dynamic programming. In this optimization state of charge and transmission ratio these are state variable and decision variable, respectively. Ratio shifting model was built to estimate energy consumption during shifting. New optimal control strategies were achieved by taking shifting energy consumption as cost function. Test results show that shift times and energy consumed are both reduced with this control strategy. Recent patents on the configuration of electric-mechanical continuously variable transmission are also addressed.
机译:由电动机驱动的机电式无级变速器是电动汽车的理想变速器。在本文中,第一个目标是解决有关机电无级变速器配置的最新专利。第二个目标是优化配备有电动无级变速器的全电动汽车的能耗。基于动态编程,已经对在新欧洲行驶周期中运行的装有EMCVT的电动汽车进行了全球优化。在该优化充电状态和传动比中,它们分别是状态变量和决策变量。建立比率转换模型以估计转换期间的能耗。通过将能源消耗作为成本函数来实现新的最优控制策略。测试结果表明,采用这种控制策略可以减少换档时间和能耗。还解决了关于机电无级变速器的配置的最新专利。

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