首页> 外文期刊>International Journal of Electric and Hybrid Vehicles >Intelligent power management of plug-in hybrid electric vehicles, part I: real-time optimum SOC trajectory builder
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Intelligent power management of plug-in hybrid electric vehicles, part I: real-time optimum SOC trajectory builder

机译:插电式混合动力汽车的智能电源管理,第一部分:实时最优SOC轨迹构建器

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摘要

Offering better fuel economy and lower emissions than conventional vehicles, plug-in hybrid electric vehicles (PHEVs) are promising near-term options for high efficiency, 'sustainable' transportation. It has recently been found that these efficiency benefits can be further improved with access to upcoming trip and driving conditions. This study is organised into two parts: in part I, upcoming trip data is used to find the optimal SOC trajectory of our PHEV model that will help minimise the total cost of electricity and fossil fuel. In part II, the optimum SOC trajectory is applied within the real-time controller to optimally distribute propulsion power between two energy sources. Autonomie was used to develop and implement a high fidelity PHEV model. The optimal SOC trajectory which has been found by real-time optimisation technique is in close agreement with the global optimum solution of Dynamic Programming. Moreover, the real-time technique is much less computationally expensive.
机译:插电式混合动力汽车(PHEV)与传统汽车相比,具有更高的燃油经济性和更低的排放量,它们有望在近期内实现高效,“可持续”的运输。最近发现,通过获得即将到来的旅行和驾驶条件,可以进一步改善这些效率优势。这项研究分为两个部分:第一部分,即将使用的出行数据用于查找我们的PHEV模型的最佳SOC轨迹,这将有助于最大程度地减少电力和化石燃料的总成本。在第二部分中,在实时控制器中应用了最佳SOC轨迹,以在两个能源之间最佳地分配推进功率。 Autonomie被用来开发和实现高保真PHEV模型。通过实时优化技术发现的最优SOC轨迹与动态规划的全局最优解非常吻合。此外,实时技术的计算成本要低得多。

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