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Feasibility Study of Electric Rubber-Tire Bus Potential in Chiang Mai - Electrification Planning

机译:清迈 - 电气化规划中电橡胶轮胎公交车潜力的可行性研究

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To study feasibility of establishing the electric rubber-tire bus in Chiang Mai, Thailand, the electrification planning is consequently one of the key topics. At first, the backward-facing method is selected for the bus modelling. This method is a quasi-static model, thus, it is no need to deal with the differential equation of motor. The driving cycle and the road incline profile are the input parameter, hence the driving cycle is simulated by PTV vissim program. The transport network, the traffic flow, the distance between bus stops and the cross section are taken into account for simulated driving cycle. The road incline is examined by the elevation difference between two bus stops in the google earth pro. The result of the proposed model is used to study the power profile along the driving distance and the total energy consumption. The interpretation of both information results in power network design. One of the most traffic feeders of the light rail transit system is selected for a case study. As a result, the peak power is 176 kW, and the total energy consumption is 16 kWh for one outbound. The minimum requirements of electrification based on the battery bus and the trolley bus are finally discussed. All in all, this paper demonstrates a complete process of electrification planning of electric bus.
机译:为了研究在泰国清迈建立电动橡胶轮胎公共汽车的可行性,因此电气化计划是关键主题之一。首先,选择用于总线建模的后向方法。该方法是准静态模型,因此,无需处理电动机的微分方程。驾驶循环和道路倾斜轮廓是输入参数,因此通过PTV VISSIM程序模拟驾驶循环。运输网络,流量流,总线站和横截面之间的距离被考虑在模拟驾驶循环中。通过两辆公共汽车站在Google地球专业人员中的两台巴士站之间的高程差异检查道路倾斜。所提出的模型的结果用于沿驾驶距离和总能量消耗研究功率分布。两种信息的解释导致电网设计。选择光轨过境系统的最具交通送料器之一进行案例研究。结果,峰值功率为176千瓦,一个出站的总能耗为16千瓦时。终于讨论了基于电池总线和拉杆总线的电气化的最小要求。总而言之,本文展示了电动总线电气化规划的完整过程。

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