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An Optimization and Analysis Framework for TCO Minimization of Plug-in Hybrid Heavy-duty Electric Vehicles

机译:插电式混合动力重型电动汽车TCO最小化的优化分析框架

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This paper develops an optimization framework to minimize the Total Cost of Ownership (TCO) for Plug-in Hybrid Electric Vehicles (PHEVs). In this paper, TCO is the summation of operational and main vehicle powertrain components cost. The developed optimization framework is formulated via combining convex optimization and Dynamic Programming technique. This framework aims at minimizing TCO by optimizing not only the sizing of the main powertrain components but also the powertrain topology. Using the developed optimization framework, this paper elaborates relevant design factors for a considered bus application namely: i) the value of equipping a HEV with plug-in functionality; ii) the effect of battery aging and replacement cost; iii) the sensitivity to fuel and electricity cost; Simulation results show that the TCO can be reduced by having plug-in functionality in the HEVs. However, this may not hold if the electricity price (in Euros/kWh) is higher than certain times of the fuel price (in Euros/kWh), e.g. 2.25 for the simulated cases in this paper. Simulation results also suggest that it is more profitable to equip the vehicle with a big enough battery to avoid replacing it during the vehicle economical life.
机译:本文开发了一种优化框架,以使插电式混合动力汽车(PHEV)的总拥有成本(TCO)最小化。在本文中,TCO是运营和主要动力总成组件成本之和。结合凸优化和动态规划技术,制定了优化框架。该框架旨在通过不仅优化主要动力总成组件的尺寸,而且还优化动力总成拓扑结构,从而最大限度地降低TCO。本文使用已开发的优化框架,详细阐述了考虑的总线应用的相关设计因素,即:i)为HEV配备插件功能的价值; ii)电池老化和更换成本的影响; iii)对燃料和电力成本的敏感性;仿真结果表明,通过在HEV中具有插件功能,可以降低总拥有成本。但是,如果电价(以欧元/千瓦时为单位)高于燃料价格的某些时间(以欧元/千瓦时为单位)(例如, 2.25针对本文的模拟案例。仿真结果还表明,为汽车配备足够大的电池以避免在汽车的经济寿命期间更换它会更有收益。

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