Analysis of the Problem of Electric Buses Charging in Urban Transport

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY Science & Technique Pub Date : 2020-08-05 DOI:10.21122/2227-1031-2020-19-4-349
A. Czerepicki, W. Choromański, M. Kozłowski, A. Kazinski
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引用次数: 2

Abstract

The electric bus is an ecological means of transport. Its operation reduces the negative impact on the environment. The transition to electric urban transport is in line with the concept of sustainable development of the European Union and the Polish “Act on Electromobility and Alternative Fuels”. Today, on the streets of Polish cities, electric buses are increasingly replacing diesel-powered vehicles. The electrification of the bus fleet requires the establishment of an appropriate infrastructure for charging vehicle batteries. Electric chargers are placed at the end stops of the communication lines. When the bus stops at the end of the route, it is possible to partially recharge the energy consumed. The amount of recharged energy depends on many factors, such as the power of the charger, bus stop time, possible waiting time for a free charger, etc. In the event of incomplete replenishment of the consumed energy, the completion of subsequent courses may be endangered. The article proposes an approach to the analysis of the process of charging electric buses at the end stops of the route, taking into account the characteristics of the vehicle battery, the intensity of vehicle traffic, the characteristics of stationary chargers and its quantity. The proposed approach uses queue theory to describe the process of bus charging. The result of the research is the estimation of the use of the chargers in different configurations and the estimation of the state of charge of the bus battery for selected timetables.
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城市交通电动公交车充电问题分析
电动公交车是一种生态交通工具。它的运行减少了对环境的负面影响。向电动城市交通过渡符合欧盟的可持续发展理念和波兰的“电动交通和替代燃料法案”。如今,在波兰城市的街道上,电动公交车正越来越多地取代柴油动力汽车。公共汽车车队的电气化需要建立适当的基础设施,为汽车电池充电。充电器安置在通信线路的两端。当巴士停在路线的终点时,它可以部分地补充消耗的能量。充电的能量取决于许多因素,如充电器的功率,公共汽车停靠时间,可能等待免费充电器的时间等。如果消耗的能量不能完全补充,则可能危及后续课程的完成。本文提出了一种综合考虑车用电池特性、车流量强度、固定充电器特性及其数量等因素,对线路末站电动公交车充电过程进行分析的方法。该方法利用排队理论来描述公交收费过程。研究的结果是对不同配置下的充电器的使用情况进行估计,并对选定时间表下母线电池的充电状态进行估计。
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来源期刊
Science & Technique
Science & Technique ENGINEERING, MULTIDISCIPLINARY-
自引率
50.00%
发文量
47
审稿时长
8 weeks
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