基于列车优化滑行操作的轨道交通节能研究

Artiya Sopharak, T. Ratniyomchai, T. Kulworawanichpong
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引用次数: 1

摘要

本文提出了一种以总能耗最小为目标的电动列车在两站间的运行。列车运动基于四种运行模式的序列:1)加速模式,2)匀速或巡航模式,3)滑行模式和4)制动模式。通过控制加速速率、减速速率和滑行点位置三个参数来优化列车速度剖面的优化问题。采用二次搜索法(Quadratic Search Method, QDS)这一数学方法,以能量消耗最小,不影响列车运行和列车服务运行时间为目标,计算出最优的滑行点位置。本文应用的案例研究是一个在两个客运站之间运行的轨道交通系统,服务距离为1公里,最高速度为45公里/小时。结果表明,滑行模式的距离越长,巡航模式的功率消耗越小,制动模式的功率消耗越小。另一方面,滑行模式的距离越短,巡航模式的功率越大,制动模式的功率越大。研究发现,QDS获得的最优滑行点位置能够显著降低总能耗3.8%。
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Energy Saving Study of Mass Rapid Transit by Optimal Train Coasting Operation
This paper presents a movement of electric train between two-passenger stopping stations with the goal of minimized total energy consumption during the journey. A train movement is based on a sequence of four operation modes: i) accelerating mode, ii) constant speed or cruising mode, iii) coasting mode and iv) braking mode. The optimization problem in which the train speed profile is optimized by controlling of three parameters: i) acceleration rate ii) deceleration rate and iii) location of coasting point. By using Quadratic Search Method (QDS) which is a mathematical method to calculate the optimal location of the coasting point, with the goal of using the minimum energy consumption and no effects with the train movement and the operating time of the train services. The case study applied in this paper is a mass rapid transit system which travels between two passenger stations with a service distance of 1 km and a maximum speed of 45 km/h. The results showed that the longer distance of the coasting mode the less power consumption in the cruising mode and the less power from the brake mode. On the other hand, the short distance of the coasting mode the more power in cruising mode and the more power from the brake mode. It is found that the optimal location of the coasting point obtained by QDS is considerably capable to reduce the overall energy consumption by 3.8%.
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