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Power Split Control Strategy for an EV Powertrain With Two Propulsion Machines

机译:具有两台推进器的电动汽车动力总成的功率分配控制策略

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摘要

In this paper, a power split control strategy is proposed for an electric vehicle (EV) powertrain with two propulsion machines and a battery/ultra-capacitor (UC) hybrid energy storage system (HESS). The proposed power split control strategy consists of two stages. In the first stage, the load power is split between the two propulsion machines to obtain the highest powertrain efficiency in both propulsion and regenerative braking modes. A real-time implementable power split control strategy is proposed to benefit from complementary operation features of these two propulsion machines. In the second stage, the load power is split between the battery pack and UC in the HESS. To optimize the power split in HESS, a convex optimization problem is formulated to minimize the battery power magnitude and battery current variations to extend the battery lifetime. The implementation of proposed power split control strategy in the powertrain of an EV with two propulsion machines will potentially result in up to 10% improvement in the powertrain efficiency and up to 82% extension of the battery lifetime. The improvement of propulsion efficiency will in turn lead to up to 27% extension of all-electric driving range.
机译:在本文中,提出了一种具有两个推进器和一个电池/超级电容器(UC)混合储能系统(HESS)的电动汽车(EV)动力总成的功率分配控制策略。提出的功率分配控制策略包括两个阶段。在第一阶段,负载功率在两个推进机之间分配,以在推进和再生制动模式下获得最高的动力总成效率。提出了一种实时可行的功率分配控制策略,以受益于这两种推进器的互补运行特性。在第二阶段,负载功率在HESS中的电池组和UC之间分配。为了优化HESS中的功率分配,提出了一个凸优化问题,以最小化电池功率大小和电池电流变化以延长电池寿命。在具有两台推进器的电动汽车的动力总成中实施建议的功率分配控制策略,可能会导致动力总成效率提高多达10%,电池寿命延长多达82%。推进效率的提高又将导致全电驱动范围的扩展高达27%。

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