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CARTESIUS: A cooperative approach to real-time decision support for multijurisdictional traffic congestion management.

机译:笛卡尔(CARTESIUS):一种用于多辖区交通拥堵管理的实时决策支持协作方法。

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摘要

This research describes an innovative distributed approach for the provision of real-time decision support to Transportation Management Center (TMC) operators for coordinated, multi-jurisdictional traffic congestion management on freeway and arterial networks. Coordinated responses among the agencies that share responsibilities for urban traffic management avoids the implementation of operations that may be conflicting or counter-productive.; A distributed software architecture, called CARTESIUS (Coordinated Adaptive Real-Time Expert System for Incident management on Urban Systems) was designed, developed and evaluated. CARTESIUS is composed of two interacting, real-time decision-support systems for TMC operator that are able to perform cooperative reasoning and resolve conflicts, for the analysis of non-recurring congestion and the formulation of suitable integrated control responses. The two agents support incident management operations for, respectively, a freeway and an adjacent arterial subnetwork. Each module interacts with a human operator in one of the agencies, is able to receive real-time traffic and control data, and provides the operator with control recommendations in response to the occurrence of incidents. The multi-decision making approach adopted by CARTESIUS reflects the spatial and administrative organization of traffic management agencies, providing a coordinated solution that attempts to satisfy all parties, preserves their own levels of authority, and reflects the inherent distribution of the decision-making power.; The structure of the distributed processing and the interaction between the agents is based on the Functionally Accurate, Cooperative (FA/C) paradigm, a distributed problem solving approach aimed at producing consistent global solutions even when complete and up-to-date information is not directly available to the agents, in order to reduce communication requirements and synchronization time delays.; The contribution of this research lies in demonstrating the validity of the assumption that satisficing control solutions can be efficiently obtained by relaxing the requirement that agents have shared access to all globally available information, and the application of theoretical principles of the FA/C paradigm to traffic control, through the development of CARTESIUS. The simulation-based validation of the system performance has demonstrated the effectiveness of such an approach in producing real-time, integrated traffic control solutions that reduce the adverse impact of incidents on traffic circulation, network-wide.
机译:这项研究描述了一种创新的分布式方法,该方法可为交通管理中心(TMC)运营商提供实时决策支持,以对高速公路和干线网络进行协调的,跨多个辖区的交通拥堵管理。分担城市交通管理责任的机构之间的协调反应避免了可能产生冲突或适得其反的业务的实施。设计,开发和评估了一种分布式软件体系结构,称为CARTESIUS(用于城市系统事件管理的协作式自适应实时专家系统)。 CARTESIUS由两个互动的,实时的TMC运营商决策支持系统组成,它们能够执行协作推理并解决冲突,以分析非经常性拥塞并制定适当的集成控制响应。这两个代理分别支持高速公路和相邻动脉子网的事件管理操作。每个模块与一个机构中的人工操作员进行交互,能够接收实时交通和控制数据,并根据事件的发生向操作员提供控制建议。 CARTESIUS采用的多决策方法反映了交通管理机构的空间和行政组织,提供了一种协调的解决方案,试图使各方满意,保留自己的权限,并反映决策权的固有分布。 ;分布式处理的结构以及代理之间的交互基于功能准确的合作(FA / C)范式,这是一种分布式问题解决方法,旨在即使在没有完整和最新信息的情况下也可以生成一致的全局解决方案直接提供给代理,以减少通信需求和同步时间延迟。该研究的贡献在于证明了以下假设的有效性:可以通过放宽代理共享访问所有全球可用信息的要求,以及将FA / C范式的理论原理应用于交通,来有效地获得令人满意的控制解决方案。通过开发CARTESIUS进行控制。基于仿真的系统性能验证证明了这种方法在产生实时,集成流量控制解决方案中的有效性,该解决方案可减少事件对整个网络流量流通的不利影响。

著录项

  • 作者

    Logi, Filippo.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Engineering Civil.; Engineering Automotive.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 197 p.
  • 总页数 197
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;自动化技术及设备;
  • 关键词

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