An adaptive strategy to mitigate instability in the ETSI DCC: Experimental validation

Elena Cinque, F. Valentini, A. Iovine, M. Pratesi
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引用次数: 12

Abstract

Cooperative Intelligent Transport System (C-ITS) applications need a continuous exchange of information between road users and roadside infrastructures. In this regard European Telecommunications Standards Institute (ETSI) has standardized the Cooperative Awareness Basic Service where status messages named Cooperative Awareness Messages (CAMs) are constructed, managed and processed. With the regular exchange of CAM messages, vehicles and roadside units are constantly informed about each others position, dynamics and attributes. Due to this massive dissemination of messages, without properly congestion control, the functionality of both safety and traffic-management C-ITS applications can be compromised. In this paper we consider the ETSI Decentralized Congestion Control (DCC) mechanism and propose a new approach to cope with relative oscillation and unfairness problems. In the proposed solution vehicles adapt their behaviour and DCC decisions according to the surrounding road traffic conditions. DCC functionality and the presented solution have been then validated through an experimental, ITS G5-compliant testbed consisting of real world devices. The obtained results show an improvement in DCC performances, evaluated in terms of machine status and Channel Busy Ratio (CBR) oscillations.
一种减轻ETSI DCC不稳定性的自适应策略:实验验证
协作式智能交通系统(C-ITS)应用需要道路使用者和路边基础设施之间不断交换信息。在这方面,欧洲电信标准协会(ETSI)对合作感知基本服务进行了标准化,其中构建、管理和处理名为合作感知消息(CAMs)的状态消息。通过定期交换CAM信息,车辆和路边单位可以不断了解彼此的位置、动态和属性。由于这种大规模的信息传播,如果没有适当的拥塞控制,安全和交通管理C-ITS应用程序的功能都可能受到损害。本文考虑了ETSI分散拥塞控制(DCC)机制,提出了一种新的解决相对振荡和不公平问题的方法。在提出的解决方案中,车辆根据周围道路交通状况调整其行为和DCC决策。DCC功能和提出的解决方案已经通过一个由现实世界的设备组成的实验性、符合ITS g5标准的测试平台进行了验证。从机器状态和信道繁忙比(CBR)振荡的角度来评估,得到的结果表明DCC性能有所改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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