Energy-efficient Routing of Electric Vehicles with Integrated Photovoltaic Installations

C. Schuss, T. Fabritius, B. Eichberger, T. Rahkonen
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引用次数: 7

Abstract

This paper investigates the potential output power of photovoltaic (PV) installations on top of battery-powered electric vehicles (BEVs) and hybrid electric vehicles (HEVs). By choosing different routes within urban areas, we expect different output power levels from the vehicle’s PV installation. Hence, we calculate energy profiles to estimate the PV energy which can be gained during driving conditions to choose the most energy-efficient route for BEVs and HEVs. While driving duration, driving distance and traffic conditions are some of the criteria within the decision-making process of routing algorithms, in this paper, we focus on energy-efficiency of routing algorithms. We present experimental data to highlight the importance of energy profiles for improving and maximising of the electrical driving distance of BEVs and HEVs.
集成光伏装置的电动汽车节能路径
本文研究了光伏(PV)安装在纯电动汽车(bev)和混合动力汽车(hev)顶部的潜在输出功率。通过在城市区域内选择不同的路线,我们期望车辆的光伏装置产生不同的输出功率水平。因此,我们通过计算能量分布来估计纯电动汽车和混合动力汽车在行驶条件下可以获得的光伏能量,从而选择最节能的路线。而行驶时长、行驶距离和交通状况是路由算法决策过程中的一些准则,本文重点研究了路由算法的能效问题。我们提出了实验数据,以强调能量分布对于改善和最大化纯电动汽车和混合动力汽车的电驱动距离的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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