Evaluation and optimization of Decentralized Congestion Control Algorithms for Vehicular Networks

Zijie Liang, F. Sedighi, A. Balador
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引用次数: 1

Abstract

Nowadays, road traffic management is becoming a major challenge for realistic society. As a result, reliable communication between vehicles is the key point to this challenge. Currently, IEEE802.11p which is considered as de facto standard for road communication is designed to solve this challenge. However, the communication channel medium is still expected to get congested when a large number of vehicles exist. Target to solve this, European Telecommunication Standards Institute (ETSI) has standardized a set of Decentralized Congestion Control (DCC) mechanisms to control channel load. One of the main topics is achieving channel load control to guarantee reliable communication for platooning systems. In this paper, we focus on investigating on DCC reactive control approaches, aiming to provide comprehensive insights of how DCC framework transmission parameters, i.e. message generation rate, transmission power and data rate, will impact the stability of platooning systems. Besides, for each instance of the transmission parameter, we target to optimize the parameter and propose more stable control algorithms by running repetitive simulations.
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车辆网络分散拥塞控制算法的评估与优化
当前,道路交通管理正成为现实社会面临的重大挑战。因此,车辆之间的可靠通信是这一挑战的关键点。目前,IEEE802.11p被认为是道路通信的事实标准,旨在解决这一挑战。然而,当车辆大量存在时,通信信道介质仍然会出现拥塞。为了解决这个问题,欧洲电信标准协会(ETSI)标准化了一套分散拥塞控制(DCC)机制来控制信道负载。其中一个主要课题是实现信道负载控制,以保证队列系统的可靠通信。在本文中,我们重点研究DCC无功控制方法,旨在全面了解DCC框架传输参数,即消息生成速率,传输功率和数据速率如何影响队列系统的稳定性。此外,对于每一个传输参数实例,我们的目标是通过重复仿真来优化参数,提出更稳定的控制算法。
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