混合动力汽车动态路径模型

K. Dr
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引用次数: 12

摘要

最近石油/天然气价格的稳步上涨,以及对更健康生态系统的需求,导致汽车转向低碳排放的替代能源的兴趣大幅增加。利用内燃机和电动发动机的混合动力汽车正在成为低碳排放车辆的主要选择,而不是由于电池使用量有限而受到限制的纯电动汽车。为了优化混合动力汽车的路径选择模式,本文提出了一种提前识别最小延迟地理路径的方法,利用prim最小生成树算法确定到达目的地的最短路径,并在枚举最小延迟路径时采用禁忌搜索,从而降低能源消耗和低碳排放,为生态友好型环境的发展铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A DYNAMIC ROUTING MODEL FOR HYBRID ELECTRIC VEHICLES
The recent steady hikes in the prices of the oil/gases and the need for the healthier ecosystem, has led to the larger increase in the interest of the vehicles to move to alternative energy resources that causes a low carbon emission. The hybrid electric vehicle that utilizes both the internal combustion engine and the electrical engine is becoming a predominant option for the vehicle with the low carbon emission than the pure electric vehicle that is restricted due to the limited battery usage. To have an optimal mode of selection of the routes for the hybrid electric vehicle, the paper proposes a method for the identification of minimum delay geographical routing in advance by determining the shortest paths available to the destinations using the prim’s minimum spanning tree algorithm, and employing Tabu-Search in enumerating the minimum delay path in order to have a reduced energy usage and a low carbon emission that paves way for the development of the eco-friendly environment.
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