Performance comparisons of contention schemes for inter-vehicle communications

K. Fujimura, T. Hasegawa
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引用次数: 7

Abstract

In this paper, an autonomous cruising traffic flow simulator including medium access control (MAC) for inter-vehicle communications (IVC) is constructed and the contention schemes are compared by using this simulator. The pure-ALOHA, slotted-ALOHA, and non-persistent CSMA schemes are simulated. The results of simulation show that the non-persistent CSMA is superior to the ALOHA schemes. This superiority becomes stronger with increasing communicating vehicle density. Also, it is shown quantitatively that setting the range of carrier sensing to twice the communication range can reduce the ratio of hidden stations that have a bad influence on the performance of the non-persistent CSMA scheme. In addition, the capture ratio in the IVC is considered in the simulations, and the influence of the capture effect on the performance of each scheme is discussed.
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车辆间通信竞争方案的性能比较
本文构造了一个包含车辆间通信介质访问控制(MAC)的自主巡航交通流模拟器,并利用该模拟器对各竞争方案进行了比较。仿真了纯aloha、开槽aloha和非持久CSMA三种方案。仿真结果表明,非持久CSMA方案优于ALOHA方案。这种优势随着通信车辆密度的增加而增强。定量地表明,将载波传感距离设置为通信距离的两倍,可以减少影响非持久CSMA方案性能的隐藏站比率。此外,在仿真中考虑了IVC的捕获率,并讨论了捕获效果对各方案性能的影响。
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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