Power Adjustment Based Congestion Control in Vehicular Ad-hoc Networks

Guofeng Lei, Fuqiang Liu, Ping Wang, Xinhong Wang, Ning Wang
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引用次数: 7

Abstract

Vehicles exchange periodic beacons to keep track of neighbor's moving trends in order to achieve cooperative safety awareness. In this paper, beacon rate is fixed as 10Hz to ensure sufficient tracking accuracy. High rate means heavy channel load. If beacons are transmitted with high power, channel will become extremely congested. To alleviate channel congestion, we propose a power adjustment based congestion control method depending on channel condition evaluation and message priority. In our scheme, channel situations are evaluated by current channel load and historical transmission delay. The mechanism is evaluated in our simulation platform which comprises of traffic simulator VISSIM for realistic urban scenario and network simulator NS3 for IEEE 802.11p-based communication. Simulation results demonstrate that our scheme has improved both the system reliability and efficiency.
基于功率调整的车辆自组织网络拥塞控制
车辆定期交换信标,跟踪邻居的移动趋势,以实现协同安全意识。为了保证足够的跟踪精度,本文将信标速率固定为10Hz。高速率意味着信道负荷大。如果信标以高功率传输,信道将变得非常拥挤。为了缓解信道拥塞,我们提出了一种基于功率调整的信道拥塞控制方法,该方法基于信道状态评估和消息优先级。在我们的方案中,信道情况由当前信道负载和历史传输延迟来评估。该机制在我们的仿真平台上进行了评估,该平台包括用于真实城市场景的交通模拟器VISSIM和用于基于IEEE 802.11p的通信的网络模拟器NS3。仿真结果表明,该方案提高了系统的可靠性和效率。
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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