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Energy management and design optimization for a series-parallel PHEV city bus

机译:串并联PHEV城市客车的能源管理和设计优化

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摘要

Series-parallel PHEV city buses combine the advantages of series and parallel configurations and have been used in China. However, the design and energy management of series-parallel PHEV city buses based on Chinese driving conditions still need to be investigated. In this paper, an equivalent consumption minimization strategy is provided to optimize energy management for series-parallel PHEV city buses, and the process of the equivalent consumption minimization strategy for series-parallel is presented in this paper. Compared with the validated rule-based energy control strategy, ECMS shows a fuel economy improvement of 8.2 in the CBCD (Chinese Bus Driving Cycle). Based on the optimal energy management, a design for a generator motor in the series-parallel configuration has been processed. The fuel consumption has been shown to decrease, with an increase in generator power, because the system with the higher generator power can work at a higher efficiency in the series mode and operate the engine in the high efficiency area in the parallel mode. Besides, in terms of costof- ownership for a PHEV bus for lifetime of 8 years, although the high generator power will lead to high purchase cost for series-parallel PHEV bus, a series-parallel PHEV city bus with a generator of 100 kW maximum power will still show small advantage in cost-of-ownership, based on current motor price and natural gas price.
机译:串并联PHEV城市客车结合了串联和并联配置的优点,并已在国内使用。然而,基于中国驾驶条件的串并联PHEV城市公交车的设计和能源管理仍有待研究。本文提供了一种优化串并联PHEV城市公交车能量管理的等效消耗最小化策略,并给出了串并联等效消耗最小化策略的流程。与经验证的基于规则的能源控制策略相比,ECMS在CBCD(中国公交车行驶循环)中显示出8.2%的燃油经济性改善。基于最优的能量管理,对串并联配置的发电机电机进行了设计。随着发电机功率的增加,油耗已被证明是降低的,因为具有较高发电机功率的系统可以在串联模式下以更高的效率工作,并在并联模式下在高效区域运行发动机。此外,在8年寿命的PHEV客车的拥有成本方面,虽然高发电机功率将导致串并联PHEV客车的高购买成本,但根据目前的电机价格和天然气价格,发电机最大功率为100kW的串并联PHEV城市客车在拥有成本方面仍然具有较小的优势。

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