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A Bayesian game-theoretic approach for MAC protocol to alleviate beacon collision under IEEE 802.11p WAVE vehicular network

机译:MAC协议的贝叶斯博弈论方法减轻IEEE 802.11p WAVE车辆网络下的信标冲突

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In the IEEE 802.11p vehicular network, the periodic beacon broadcasting of safety messages requires status advertisement to assist drivers in maintaining safety. In high vehicular density situations, the channel becomes overloaded, thereby increasing the probability of beacon collision that increases the delay. In this paper, we have considered game theoretic models of wireless medium access control to avoid beacon collision where each transmitter makes individual decisions regarding their power level or transmission probability. We have evaluated the equilibrium transmission strategies, proved that there exists only one Bayesian equilibrium in our game, and validated our result using simulation.
机译:在IEEE 802.11p车载网络中,安全消息的定期信标广播需要状态通告,以帮助驾驶员维护安全。在高车辆密度的情况下,通道变得过载,从而增加了信标碰撞的可能性,从而增加了延迟。在本文中,我们考虑了无线媒体访问控制的博弈论模型,以避免信标冲突,因为每个发射器都会就其功率水平或传输概率做出各自的决定。我们评估了平衡传递策略,证明了我们的博弈中仅存在一个贝叶斯平衡,并通过仿真验证了我们的结果。

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