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Resource Allocation for Low-Latency Vehicular Communications with Packet Retransmission

机译:利用数据包重传的低延迟车辆通信资源分配

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Vehicular communications have stringent latency requirements on safety-critical information transmission. However, lack of instantaneous channel state information due to high mobility poses a great challenge to meet these requirements and the situation gets more complicated when packet retransmission is considered. Based on only the obtainable large- scale fading channel information, this paper performs spectrum and power allocation to maximize the ergodic capacity of vehicular-to- infrastructure (V2I) links while guaranteeing the latency requirements of vehicular-to-vehicular (V2V) links. First, for each possible spectrum reusing pair of a V2I link and a V2V link, we obtain the closed- form expression of the packets' average sojourn time (the queueing time plus the service time) for the V2V link. Then, an optimal power allocation is derived for each possible spectrum reusing pair. Afterwards, we optimize the spectrum reusing pattern by addressing a polynomial time solvable bipartite matching problem. Numerical results show that the proposed queueing analysis is accurate in terms of the average packet sojourn time. Moreover, the developed resource allocation always guarantees the V2V links' requirements on latency.
机译:车辆通信对安全关键信息传输具有严格的延迟要求。然而,由于高移动性导致的瞬时信道状态信息构成了满足满足这些要求的巨大挑战,并且当考虑数据包重传时,情况变得更加复杂。仅基于可获得的大型衰落通道信息,本文执行频谱​​和功率分配,以最大化车辆到基础设施(V2I)链路的遍历能力,同时保证车辆到车辆(V2V)链路的延迟要求。首先,对于每个可能的频谱重用对V2i链路和V2V链路,我们获得了v2v链路的分组平均静脉时间的闭合表达式(排队时间加上服务时间)。然后,为每个可能的频谱重用对导出最佳功率分配。之后,我们通过解决多项式时间可溶性二分匹配问题来优化频谱重用模式。数值结果表明,在平均分组苏姆纳时间方面,所提出的排队分析是准确的。此外,发达的资源分配始终保证V2V链路对延迟的要求。

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