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Development of a software platform for a plug-in hybrid electric vehicle simulator

机译:插电式混合动力电动汽车模拟器软件平台的开发

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Electricity use for transportation has had limited applications because of battery storage range issues, although many recent successful demonstrations of electric vehicles have been achieved. Renewable biofuels such as biodiesel and bioethanol also contribute only a small percentage of the overall energy mix for mobility. Recent advances in hybrid technologies have significantly increased vehicle efficiencies. More importantly, hybridization now allows a significant reduction in battery capacity requirements compared to pure electric vehicles, allowing electricity to be used in the overall energy mix in the transportation sector. This paper presents an effort made to develop a Plug-in Hybrid Electric Vehicle (PHEV) platform that can act as a comprehensive alternative energy vehicle simulator. Its goat is to help in solving the pressing needs of the transportation sector, both in terms of contributing data to aid policy decisions for reducing fossil fuel use, and to support research in this important area. The Simulator will allow analysing different vehicle configurations, and control strategies with regards to renewable and non-renewable fuel and electricity sources. The simulation platform models the fundamental aspects of PHEV components, that is, process control, heat transfer, chemical reactions, thermodynamics and fluid properties. The outcomes of the Simulator are: (i) determining the optimal combination of fuels and grid electricity use, (ii) performing greenhouse gas calculations based on emerging protocols being developed, and (iii) optimizing the efficient and proper use of renewable energy sources in a carbon constrained world.
机译:由于电池存储范围的问题,运输用电的应用受到了限制,尽管最近已成功进行了许多电动汽车的演示。可再生生物燃料,例如生物柴油和生物乙醇,也仅占整个机动性能源结构的一小部分。混合动力技术的最新进展显着提高了车辆效率。更重要的是,与纯电动汽车相比,现在的混合动力技术大大降低了电池容量需求,从而使电力可用于交通运输行业的整体能源结构中。本文介绍了开发可作为综合性替代能源汽车模拟器的插电式混合动力汽车(PHEV)平台的努力。它的目标是帮助解决交通运输行业的紧迫需求,既包括提供数据以帮助决策减少化石燃料的使用,又要支持这一重要领域的研究。该模拟器将允许分析不同的车辆配置,以及有关可再生和不可再生燃料和电源的控制策略。仿真平台对PHEV组件的基本方面进行建模,即过程控制,传热,化学反应,热力学和流体特性。该模拟器的结果是:(i)确定燃料和电网用电量的最佳组合,(ii)根据正在制定的新兴协议进行温室气体计算,以及(iii)优化可再生能源的有效利用。一个碳受限的世界。

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