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Minimizing emergency message collisions and maximizing network throughput in IEEE 802.11p vehicular wireless network

机译:在IEEE 802.11p车载无线网络中,将紧急消息冲突最小化并最大化网络吞吐量

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IEEE 802.11p is proposed as the VANET wireless MAC interface for the transmissions of emergency messages in V2V and V2I Communications. However, in a high mobility VANET, QoS of both the emergency message (EM) and handoff transmissions suffer from high collision probability of the contention-based media access mechanism and high interference exhibiting near the cell-edge that encodes a low coding rate of the Adaptive Modulation and Coding (AMC) scheme. Thus, this paper proposes an efficient MAC for IEEE 802.11p to solve above critical issues, in which the approach consists of three main mechanisms: 1) the Sigmoid-based CW Decrease (SWD) algorithm, 2) the Dynamic Initial CW (DIW) algorithm, and 3) Relay-based partition Collision Domain for Handoffs (RCDH). Note that the CW decrease formulation is determined based on the Sigmoid function. Numerical results demonstrate that the analysis results are close to the simulation results, and thus justify the correctness of the mathematical analytical model. In addition, the proposed approach outperforms the compared approaches (including the IEEE 802.11p std.) in EM transmission delay, collision probability, throughput, and MAC frame dropping probability.
机译:提议将IEEE 802.11p作为VANET无线MAC接口,用于在V2V和V2I通信中传输紧急消息。但是,在高移动性VANET中,紧急消息(EM)和越区切换传输的QoS都遭受基于争用的媒体访问机制的高冲突概率,并且在小区边缘附近表现出较高的干扰,从而对基站的低编码率进行编码。自适应调制和编码(AMC)方案。因此,本文提出了一种用于IEEE 802.11p的有效MAC,以解决上述关键问题,该方法包括三种主要机制:1)基于Sigmoid的CW减少(SWD)算法,2)动态初始CW(DIW)算法,以及3)基于中继的分区冲突切换域(RCDH)。注意,CW降低公式是根据Sigmoid函数确定的。数值结果表明,分析结果与仿真结果相近,证明了数学分析模型的正确性。此外,该方法在EM传输延迟,冲突概率,吞吐量和MAC帧丢失概率方面均优于比较方法(包括IEEE 802.11p std。)。

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