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首页> 外文期刊>IEEE / ASME Transactions on Mechatronics >Series Hybrid Electric Vehicle Simultaneous Energy Management and Driving Speed Optimization
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Series Hybrid Electric Vehicle Simultaneous Energy Management and Driving Speed Optimization

机译:系列混合动力电动汽车同时能源管理和行驶速度优化

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摘要

The energy management (EM) and driving speed co-optimization of a series hybrid electric vehicle for minimizing fuel consumption is addressed in this paper on the basis of a suitably modeled series powertrain architecture. This paper proposes a novel strategy that finds the optimal driving speed simultaneously with the energy source power split for the drive mission specified in terms of the road geometry and travel time. Such a combined optimization task is formulated as an optimal control problem (OCP) that is solved by an indirect optimal control method, based on Pontryagins minimum principle. The optimization scheme is tested under a rural drive mission by extensive comparisons with conventional methods that deal with either speed optimization only or EM strategies with given driving cycles. The comparative results show the superior performance of the proposed method and provide further insight into efficient driving.
机译:本文在适当建模的串联动力总成体系结构的基础上,针对串联混合动力电动汽车的能源管理(EM)和行驶速度共同优化问题,以最大程度地减少燃料消耗。本文提出了一种新颖的策略,该方法同时针对道路几何形状和行驶时间指定的驾驶任务,同时找到最佳驾驶速度和能源动力分配。这种组合的优化任务被公式化为最优控制问题(OCP),该问题通过基于Pontryagins最小原理的间接最优控制方法解决。在乡村驾驶任务下,通过与仅处理速度优化或给定驾驶周期的EM策略的常规方法进行大量比较,对优化方案进行了测试。比较结果显示了所提出方法的优越性能,并为有效驾驶提供了进一步的见识。

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