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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Comprehensive Analysis and Optimal Configurations of the EVT Powertrain
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Comprehensive Analysis and Optimal Configurations of the EVT Powertrain

机译:EVT动力总成的综合分析和优化配置

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This paper investigates the design of a series-parallel hybrid electric powertrain that includes an electric variable transmission (EVT) and two mechanical gears that connect the EVT to the rest of the powertrain. The EVT is implemented as a dual rotor electric machine (EM), which from a design perspective can be studied as two separate EMs. The goal is to optimize the size of the two EMs and the two mechanical gears, while minimizing fuel consumption, subject to performance requirements on top vehicle speed and acceleration time. A practical optimization methodology is proposed that decouples the multi-objective problem into three different control subproblems: a slow dynamic subproblem for fuel economy, a fast dynamic subproblem for acceleration performance and a static optimization subproblem for the top speed performance. Efficient dynamic programming formulations are presented to solve the two dynamic subproblems. Two different scenarios are discussed and analyzed, where the first one presents the influence of the EMs sizes on the vehicle performance and the second one delivers near optimal configurations of the EVT powertrain for different gear ratios. A case study is also carried out to compare the sizing results between the proposed method and an existing benchmark method, showing that the two EMs could be reduced by 45 and 11.87 respectively, while powertrain performance could still be maintained at the same level.
机译:本文研究了串并联混合动力总成的设计,该总成包括一个电动变速箱(EVT)和两个将EVT连接至该总成其余部分的机械齿轮。 EVT被实现为双转子电机(EM),从设计角度来看,可以将其视为两个独立的EM。目标是在满足最高车速和加速时间的性能要求的同时,优化两个EM和两个机械齿轮的尺寸,同时将油耗降至最低。提出了一种实用的优化方法,将多目标问题分解为三个不同的控制子问题:节油的慢速动态子问题,加速性能的快速动态子问题和最高速度性能的静态优化子问题。提出了有效的动态编程公式来解决两个动态子问题。讨论并分析了两种不同的情况,其中第一种情况显示了EM尺寸对车辆性能的影响,第二种情况则针对不同的传动比提供了EVT动力总成的最佳配置。还进行了案例研究,比较了所提出的方法和现有基准方法的定型结果,结果表明两个EM可以分别降低45和11.87,而动力总成性能仍可以保持在同一水平。

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