A Dynamic Model of Profit Maximization for Carsharing Services: Astana, Republic of Kazakhstan

IF 2.1 Q3 ENVIRONMENTAL SCIENCES Urban science (Basel, Switzerland) Pub Date : 2023-07-12 DOI:10.3390/urbansci7030074
B. Amirgaliyev, Oleksandr Kuchanskyi, Y. Andrashko, D. Yedilkhan
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Abstract

This study considers building a dynamic model of profit maximization for a carsharing system and its verification based on the case of implementing such a system in Astana, Republic of Kazakhstan. The region, bounded by the administrative boundaries of Astana, was divided into subregions that covered the region with regular hexagons placed side by side. A dataset was built with information on 1168 trips to Astana from January to March 2023. The Kepler visualization service constructed maps of the beginning and end of the trips to the region and a map of trips binding to the hexagonal grid cells. Each cell of the grid corresponds to a specific subregion, for which the quantitative parameters necessary for solving the profit maximization problem in the carsharing system are calculated. Stations with cars are placed in the cells of the grid, which are available to carsharing service customers. Based on the collected data, dynamic (four periods per day) and static profit maximization models in the carsharing system were built. Modeling was carried out based on the built models in the case of Astana. It was established that using a dynamic profit maximization model in the carsharing system increases profit by 3.7%. The obtained results are important for the development of the infrastructure of the capital of Kazakhstan and for finding a solution to the problems of urban science in this region.
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汽车共享服务利润最大化的动态模型:阿斯塔纳,哈萨克斯坦共和国
本研究考虑建立一个汽车共享系统的利润最大化动态模型,并以哈萨克斯坦共和国阿斯塔纳的汽车共享系统为例进行验证。该地区以阿斯塔纳的行政边界为界,被划分为多个小区域,这些小区域被并排放置的正六边形覆盖。建立了一个数据集,其中包含2023年1月至3月期间前往阿斯塔纳的1168次旅行的信息。开普勒可视化服务构建了到达该地区的起点和终点的地图,以及与六边形网格细胞绑定的旅行地图。网格的每个单元格对应于一个特定的子区域,并据此计算出解决汽车共享系统中利润最大化问题所需的定量参数。有汽车的充电站被放置在电网的单元中,供汽车共享服务的客户使用。基于收集到的数据,分别建立了汽车共享系统的动态(每天4个时段)和静态利润最大化模型。以阿斯塔纳为例,基于构建的模型进行建模。结果表明,采用动态利润最大化模型,汽车共享系统的利润可增加3.7%。所获得的结果对于哈萨克斯坦首都基础设施的发展和寻找该地区城市科学问题的解决方案具有重要意义。
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CiteScore
4.30
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0.00%
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0
审稿时长
11 weeks
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