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A new algorithm for eco-friendly path guidance focused on electric vehicles

机译:一种专注于电动车的环保路径指导算法

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摘要

The automobile industry is showing increasing interest in eco-friendly electric vehicles (EVs) with the aim of replacing vehicles that rely on traditional fossil fuels for energy. This study investigates the routing of an EV with maximum efficiency relative to the terrain. As EVs have poor climbing ability due to limitations associated with battery efficiency, this study determines the optimal route using 3D spatial information data and the slope of each link in the route. In the transportation field, the Bureau of Public Roads function classifies the shortest paths and optimizes paths. By adding slope-related variables, a new functional expression that includes weighting as a result of slope-related speed reduction is constructed, and a new functional expression system and network are built. As a result of assigning a route to optimize battery efficiency, the energy efficiency was improved by 7.84 km/kWh at an average speed of 70 km/h. The effectiveness was verified by comparing the total travel time and energy efficiency dif-ferences between the two methods. The proposed approach enables efficient transport and ultimately achieves the goal of green transportation with maximum energy efficiency. (c) 2021 Elsevier Ltd. All rights reserved.
机译:汽车工业正在对环保电动汽车(EVS)的兴趣幅度越来越兴趣,目的是更换依赖于传统化石燃料的能量的车辆。本研究调查了EV的路由,以相对于地形的最大效率。由于EVS由于与电池效率相关的限制而具有较差的攀爬能力,因此本研究确定了使用3D空间信息数据和路线中每个链路的斜率的最佳路径。在运输领域,公共道路职能职能分类最短路径并优化路径。通过添加斜率相关变量,构造了由于斜率相关速度减少而导致的加权的新功能表达式,构建了新的功能表达式系统和网络。由于分配了优化电池效率的路线,所能提高了7.84 km / kWh的平均速度为70 km / h。通过比较两种方法之间的总旅行时间和能效差异来验证有效性。拟议的方法使得能够有效运输,最终实现了绿色运输的目标,以最大的能量效率。 (c)2021 elestvier有限公司保留所有权利。

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