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A framework for modeling train control systems based on agent and cellular automata

机译:基于智能体和元胞自动机的列车控制系统建模框架

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A train control system is a system that is geographically and functionally distributed. Its subsystems have a high degree of autonomy. Because of these characteristics, this paper describes a two-layer framework for modeling train control systems. The upper-layer is defined by agents. The lower-layer is the cellular automata (CA) traffic model to simulate the train following dynamic. The CA model delivers the knowledge needed by the agents to make decisions. The interaction between agents can describe the decision-making processes of train control systems to achieve its functions. Its functions are classified into three levels: Service Control Functionality, Signaling Functionalities and Train Operation Functionality. A case study is used to illustrate the applicability of the proposed framework. The study results show that the proposed framework can be successfully used to analyze the influence on traffic flow, which is caused by the train control system.
机译:火车控制系统是在地理和功能上分布的系统。其子系统具有高度的自治性。由于这些特性,本文描述了一个用于火车控制系统建模的两层框架。上层由代理定义。下层是元胞自动机(CA)交通模型,用于模拟列车的动态行驶。 CA模型可提供代理做出决策所需的知识。代理之间的交互可以描述列车控制系统实现其功能的决策过程。其功能分为三个级别:服务控制功能,信令功能和列车运行功能。通过案例研究来说明所提出框架的适用性。研究结果表明,所提出的框架可以成功地用于分析由列车控制系统引起的对交通流量的影响。

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