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An immune network based distributed architecture to control public bus transportation systems

机译:基于免疫网络的分布式架构,用于控制公共汽车运输系统

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摘要

Although many Public Transportation Control Systems (PTCS) were developed to support the management of public transportation systems, there is still a need to improve the capability of PTCS to deal with a variety of disturbance types, which may degrade performance (e.g. earliness/delay) and quality of service (QoS, e.g. punctuality, frequency and utilization). This paper extends our previous works on artificial immune systems to control Public Transportation Systems by means of buses (PTS). The main contribution consists in developing a distributed reaction mechanism based on the immune network theory and its related mechanisms, such as cell costimulation, co-suppression, activation and coordination. The immune network reaction mechanism is implemented within a distributed multi-agent architecture, and its performance is assessed using traffic simulation software. The immune network reaction mechanism is benchmarked against other control strategies (holding at station, skip station, and their combination), and performance is evaluated based on three classes of criteria: time oriented criteria, passenger oriented criteria and service oriented criteria. The performance of the suggested system with respect to passenger and service oriented criteria was remarkably higher than the performance of other control algorithms. With respect to time oriented criteria, the performance of the suggested system was found slightly better than the combination of holding and skipping stations.
机译:尽管制定了许多公共交通管制系统(PTCS)以支持公共交通系统的管理,但仍有必要提高PTCS处理各种干扰类型的能力,这可能降低性能(例如,早期/延迟)和服务质量(QoS,例如尖端,频率和利用率)。本文通过公共汽车(PTS)扩展了我们以前的人工免疫系统的工作,以控制公共交通系统。主要贡献包括基于免疫网络理论及其相关机制的分布式反应机制,如细胞共抑制,共抑制,激活和协调。免疫网络反应机制在分布式多算子架构中实现,并使用流量仿真软件进行评估其性能。免疫网络反应机制与其他控制策略(持有站,跳过站及其组合的持有)基准测试,并根据三类标准进行评估:以时间为导向的标准,乘客导向标准和面向服务的标准。建议系统关于乘客和服务导向标准的性能显着高于其他控制算法的性能。关于面向时间的标准,建议系统的性能略好于保持和跳过站的组合。

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