复杂场景下货运列车的节能优化运行策略

Q4 Engineering
Cheng Xie, Lingzhi Yi, Yahui Wang, Jiangyong Liu, Chuyang Yi, Wenbo Jiang
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引用次数: 0

摘要

为了优化货运列车在复杂运行环境中的节能驾驶,采用合理的列车操纵方法可以大大降低列车牵引能耗。针对货运列车复杂场景的节能机动策略的最新专利进行了研究。利用后退地平线算法和改进的NSGA-II算法求解货运列车的目标速度曲线,以应对复杂多变的运行环境,并探索货运列车节能机动策略和方法的最新专利。本研究调查了货运列车在复杂场景下的节能机动策略的最新专利。以降低列车牵引能耗和运行时间为目标,建立了电气定相货运列车操纵的多目标优化模型。提出了一种确定复杂线路条件下货物列车最优运行条件的方法。利用RH-INSGA-II算法,实现了货物列车电气相位约束下目标速度曲线的离线优化和临时限速(TSR)下的在线调整。以HXD1型电力机车牵引50节C80型货车为例,结合实际货运线路数据进行了仿真实验验证。考虑分相约束的速度曲线可以有效地降低牵引能耗。电分相约束影响整个速度优化过程,而不仅仅是分相区的速度曲线。尽管牵引能耗随着线路上TSR的增加而增加,但RH-INSGA-II算法根据计划的列车运行时间动态改变最佳列车操纵条件的顺序,以避免列车晚点时间的进一步放大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Saving Optimal Operation Strategy of Freight Trains Under Complex Scenarios
For the optimization of energy-saving driving of freight trains in complex operating environments, the use of reasonable train maneuvering methods can largely reduce the energy consumption of train traction. Recent patents on energy-efficient maneuvering strategies for complex scenarios of freight trains have been researched. Using the receding horizon algorithm and the improved NSGA-II algorithm to solve the target speed curve of freight trains to cope with the complex and changing operating environment, and to explore the recent patents of energy-saving maneuvering strategies for freight trains and methods. The recent patents of energy-efficient maneuvering strategies for freight trains in complex scenarios are investigated in this research. A multi-objective optimization model for freight train maneuvering with electrical phasing was developed with the objectives of reducing the traction energy consumption and running time of the train. A method for determining the optimal operating conditions of freight trains under complex line conditions is proposed. The offline optimization of the target speed curve under the electrical phasing constraints of freight trains and the online adjustment under the temporary speed limit (TSR) are achieved by using the RH-INSGA-II (receding horizon-improved NSGA- II) algorithm. Combined with an actual freight railroad line data as an example, simulation experiments were conducted and verified with HXD1 electric locomotive hauling 50 C80 wagons. The speed curve considering the split-phase constraint can effectively reduce the traction energy consumption. The electrical split-phase constraint affects the whole speed optimization process, not only the speed curve at the split-phase zone. Although the traction energy consumption is increased with the addition of the TSR on the line, the RH-INSGA-II algorithm dynamically changes the sequence of optimal train maneuvering conditions according to the planned train running time in order to avoid further amplification of the late train time.
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来源期刊
Recent Patents on Mechanical Engineering
Recent Patents on Mechanical Engineering Engineering-Mechanical Engineering
CiteScore
0.80
自引率
0.00%
发文量
48
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