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Designing train-speed trajectory with energy efficiency and service quality

机译:使用能源效率和服务质量设计火车速轨迹

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With the development of automatic train operations, optimal trajectory design is significant to the performance of train operations in railway transportation systems. Considering energy efficiency and service quality, this article formulates a bi-objective train-speed trajectory optimization model to minimize simultaneously the energy consumption and travel time in an inter-station section. This article is distinct from previous studies in that more sophisticated train driving strategies characterized by the acceleration/deceleration gear, the cruising speed, and the speed-shift site are specifically considered. For obtaining an optimal train-speed trajectory which has equal satisfactory degree on both objectives, a fuzzy linear programming approach is applied to reformulate the objectives. In addition, a genetic algorithm is developed to solve the proposed train-speed trajectory optimization problem. Finally, a series of numerical experiments based on a real-world instance of Beijing-Tianjin Intercity Railway are implemented to illustrate the practicability of the proposed model as well as the effectiveness of the solution methodology.
机译:随着自动列车运营的发展,最佳的轨迹设计对于火车运输系统中的火车操作性能具有重要意义。考虑到能量效率和服务质量,本文制定了双目标列车速度轨迹优化模型,以尽量减少站在站间部分中的能量消耗和行程时间。本文与以前的研究不同,因为具体考虑了由加速/减速齿轮,巡航速度和速度移位的更复杂的列车驾驶策略。为了获得具有相同令人满意的令人满意程度的最佳列车速度轨迹,应用模糊线性规划方法来重新重新格式化目标。此外,开发了一种遗传算法来解决所提出的培训速度轨迹优化问题。最后,实施了基于北京天津城市铁路实例的一系列数值实验,以说明所提出的模型的实用性以及解决方案方法的有效性。

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