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Assurance Evaluation Technology for an Autonomous Decentralized ATC System

机译:自主分散ATC系统的保证评估技术

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High transport capacity, high safety, and high reliability are required of train control systems in the high-density operational sections. The conventional systems operate as follows. The presence of a train is detected at each fixed section. Based on a decision as to whether or not the train should progress into the section, the velocity of the train is calculated by a centralized control system on the ground, and the result is communicated to the automatic train control device (ATC) of the train. It is difficult to realize high-density transport by this mechanism. This paper proposes an autonomous decentralized ATC system (D-ATC), which works as follows. Each train detects its own position. Only the position at which to stop is communicated from the ground to the train, and the velocity of the train is determined and controlled autonomously on the basis of this instruction. Then, an assurance technology is proposed in which trains with D-ATC are introduced stepwise without disturbing the operation of the whole system, and their testing in on-line operation is assured while they coexist with trains with the existing ATC. The on-train integration and the on-train separation technologies are presented as two methods of stepwise introduction and are evaluated from the viewpoint of assurance. Based on the results obtained in this study, a practical application was performed in the train control system of the JR East Yamanote/Keihin Tohoku line.
机译:在高密度操作区中的列车控制系统需要高运输能力,高安全性和高可靠性。常规系统如下操作。在每个固定路段检测到火车的存在。根据关于是否应该驶入该区间的决定,由地面上的集中控制系统计算火车的速度,并将结果传送到火车的自动火车控制装置(ATC) 。通过这种机制难以实现高密度输送。本文提出了一种自治的分散式ATC系统(D-ATC),其工作原理如下。每列火车都会检测自己的位置。从地面仅将停止的位置从地面传送到火车,并且根据该指令自主确定和控制火车的速度。然后,提出了一种保证技术,其中逐步引入具有D-ATC的列车而不会干扰整个系统的运行,并确保它们在与现有ATC的列车共存的同时进行在线运行测试。介绍了列车上的集成和列车上的分离技术,作为逐步引入的两种方法,并从保证的角度对其进行了评估。基于这项研究的结果,在JR东山手/京滨东北线的列车控制系统中进行了实际应用。

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