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A Scenario-Reconfigurable Simulator for Verifying Service-Oriented Cooperation Mechanisms and Policies of Connected Intelligent Vehicles

机译:一种场景可重构模拟器,用于验证互联智能汽车的面向服务的协作机制和策略

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摘要

With the emerging vehicular network and the possible diverse applications, intelligent transportation systems (ITS) have been evolving to Cooperative ITS (C-ITS) with connected intelligent vehicles, and the topics in this field have raised more and more research interests recently. However, subjecting to the immaturity of V2X communication technology, the difficulty and high cost to deploy such large scale ITS with intelligent vehicles, emerging studies are stuck with the verification of these big C-ITS. As more and more expected, intelligent vehicles will play important roles in the future smart cities and societies, as diverse mobility carriers. Focusing on new features of these carriers, mainly covering cyber-physical fusion, vehicular networking, service-carrier and so on, one new ITS simulator QoS-CITS for such service-oriented C-ITS is designed and developed. To enhance the adaptability, a scenario reconfigurable architecture is firstly designed, in which scenes can be described via XML file. On this basis, the authors have implemented all reservation-based models of traffic objects, state-driven behaviors, cooperation mechanisms, and policies, which are proposed for service-oriented C-ITS. Through a series of experiments are conducted with different parameters and typical scenes, all simulation functions are efficiently verified. And finally, some important conclusions drawn from large amount of experiments via QoS-CITS are exhibited. It's important to note that, researchers can conduct various experiments, both the traditional Passing-Through-Intersection (PTI) problem and service-oriented cooperation, via setting parameters of QoS-CITS according to their requirements, and can also analyze the performance with statistics data recorded automatically.
机译:随着车辆网络的兴起和可能的多样化应用,智能交通系统(ITS)逐渐发展为具有连接智能车辆的协作ITS(C-ITS),并且该领域的主题最近引起了越来越多的研究兴趣。但是,由于V2X通信技术的不成熟,在智能车辆中部署如此大规模ITS的困难和高成本,新兴的研究一直停留在验证这些大型C-ITS上。越来越多的人期望,智能汽车将在未来的智能城市和社会中扮演各种移动载体的角色。针对这些运营商的新功能,主要涵盖网络物理融合,车载网络,服务运营商等,设计并开发了一种针对此类面向服务的C-ITS的新型ITS仿真器QoS-CITS。为了增强适应性,首先设计了一种场景可重配置架构,其中场景可以通过XML文件描述。在此基础上,作者已实现了针对面向服务的C-ITS提出的所有基于预留的流量对象,状态驱动的行为,协作机制和策略模型。通过在不同参数和典型场景下进行的一系列实验,可以有效地验证所有仿真功能。最后,展示了通过QoS-CITS通过大量实验得出的一些重要结论。需要注意的是,研究人员可以根据需要通过设置QoS-CITS参数进行传统的直通口(PTI)问题和面向服务的合作等各种实验,还可以通过统计分析性能数据自动记录。

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