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Integrated train dwell time regulation and train speed profile generation for automatic train operations on high-density metro lines: A distributed optimal control method

机译:综合列车停留时间调节和火车速度轮廓生成用于高密度地铁线路的自动列车操作:分布式最优控制方法

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The wide-spread application of automatic train operation (ATO) system on metro lines allows short service headways, high-density operations and high operation efficiency. This paper addresses real-time train control for ATO when faced with disturbances or disruptions in its operations. More specifically, the paper focuses on the design of integrated train dwell time regulation and speed profile generation in real-time and in response to dynamic changes in the operation environment. A nonlinear optimal control model is formulated in a rolling horizon scheme that incorporates three key operating elements: train timetable, passenger load and train speed profile. The objective is to simultaneously improve headway regularity and reduce the total energy consumptions. To satisfy the realtime control requirement for ATO system, a decomposition method based on the alternating direction method of multipliers (ADMM) is designed to divide the original optimization problem into many sub-problems, one for each train, which can then be computed in a distributed manner. Moreover, to address the non-convexity issue, a relax-round-polish process is developed to deal with the formulated nonlinear optimal control problem with convex objective over non-convex constraints in order to find the approximate solutions quickly for the embedded applications. The combined result is an ADMM-based heuristic algorithm. The effectiveness of the proposed model and solution algorithm is demonstrated using real-world data from the Changping Line of Beijing Metro. The results show that the proposed distributed and embedded optimization algorithm is able to significantly enhance the robustness and reliability of real-time train control in automated high-density metro lines.(c) 2021 Elsevier Ltd. All rights reserved.
机译:列车自动运行(ATO)系统对地铁线路的广泛分布的应用程序允许短服务车头时距,高密度的操作和高的运行效率。对于ATO本文地址实时列车控制时面临着其业务的干扰或中断。更具体地说,本文重点研究集成列车的设计停留时间调节和速度曲线代实时响应的操作环境的动态变化。非线性优化控制模型被配制在并入三个关键的操作元件的滚动地平线方案:列车时刻表,乘客负荷和列车速度曲线。我们的目标是同时提高进展规律性,减少总的能量消耗。为了满足对ATO系统,基于乘法器(ADMM)的交替方向法的分解方法的实时控制的要求被设计来划分原始优化问题分成许多子问题,每个列车,其可随后在被计算分布式的方式。此外,为解决非凸问题,一个放松轮抛光工艺开发,以快速找到近似解为嵌入式应用处理与凸客观上非凸约束制定的非线性最优控制问题。将合并的结果是一个基于ADMM启发式算法。该模型及算法的有效性,使用从北京地铁昌平线真实世界的数据显示。结果表明,所提出的分布式和嵌入式优化算法能够显著提高自动化高密度的地铁线路实时列车控制的稳健性和可靠性。版权所有(C)2021爱思唯尔有限公司保留所有权利。

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