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Comprehensive lost minimization strategy for parallel plug-in hybrid electric vehicles

机译:并联插电式混合动力汽车的综合损耗最小化策略

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Plug-in hybrid electric vehicles (PHEVs) have two energy inputs, the petroleum fuel and electric energy from the utility grid. Due to the different operation costs, the energy management has significant effects on the fuel economy. In this paper, an energy management strategy, stemmed from the AER-focused and blended strategy, is developed. It features the “smart” utilization of the stored electric energy and meanwhile provides intensive electric range. A traffic pattern identification algorithm is proposed. Using the historic and current traffic data, the algorithm can identify the highway and urban traffic pattern, which provides the guidance of the “smart” utilization. In addition, an innovative real time control algorithm for charge sustenance is proposed. It computs the comprehensive energy loss of the hybrid drive train. The operation points with the minimum comprehensive energy loss is found to be the optimized engine and motor operation points. Simulation results show that significant improvement of fuel efficiency can be achieved.
机译:插电式混合动力汽车(PHEV)具有两种能源输入,即石油燃料和来自公用电网的电能。由于运行成本不同,能源管理对燃油经济性有重大影响。在本文中,开发了一种以AER为中心的混合策略的能源管理策略。它具有“智能”利用所存储电能的特点,同时提供了密集的电功率范围。提出了一种交通模式识别算法。使用历史和当前交通数据,该算法可以识别高速公路和城市交通模式,为“智能”利用提供指导。此外,提出了一种创新的电荷维持实时控制算法。它计算了混合动力系统的综合能量损失。综合能量损失最小的运行点被认为是优化的发动机和电动机运行点。仿真结果表明,可以显着提高燃油效率。

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