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A Real-Time Energy Management System for Operating Cost Minimization of Fuel Cell/Battery Electric Vehicles

机译:实时能源管理系统,可将燃料电池/电池电动汽车的运营成本降至最低

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This paper presents a Real-Time Energy Management System (RT-EMS) for minimizing the operating costs of a Fuel Cell/Battery Electric Vehicle (FCBEV). Particularly, a suitable cost function is considered, which accounts for battery and fuel cell degradation, as well as for fuel consumption and battery charging reinstatement. The cost function is thus minimized in real-time by a suitable energy management strategy, which is designed based on an appropriate model of the overall electric propulsion system. In this regard, a suitable power split criterion is determined, based on which the proposed RT-EMS shares the propulsion power between fuel cell and battery. As a result, the cost function can be minimized whatever the driving cycle is. The effectiveness of the proposed RT-EMS has been assessed by numerical simulations, which have been performed in Matlab-Simulink considering different driving cycles and a hysteresis-based EMS for comparison purposes.
机译:本文提出了一种实时能源管理系统(RT-EMS),可将燃料电池/电池电动汽车(FCBEV)的运营成本降至最低。特别地,考虑合适的成本函数,其考虑了电池和燃料电池的退化以及燃料消耗和电池充电的恢复。因此,通过适当的能量管理策略将成本函数实时最小化,该策略是基于整个电力推进系统的适当模型进行设计的。在这方面,确定合适的功率分配标准,基于该功率分配标准,所提出的RT-EMS在燃料电池和电池之间共享推进功率。结果,无论行驶周期如何,成本函数都可以最小化。建议的RT-EMS的有效性已通过数值模拟进行了评估,该数值模拟已在Matlab-Simulink中进行了考虑到不同驾驶周期和基于磁滞的EMS进行比较的目的。

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