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Stackelberg Game-Based Power Allocation for V2X Communications

机译:基于Stackelberg游戏的V2X通信电源分配

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摘要

Ultra-reliable low-latency communication (URLLC) is one of the three usage scenarios anticipated for 5G, which plays an important role in advanced applications of vehicle-to-everything (V2X) communications. In this paper, the Stackelberg game-based power allocation problem was investigated in V2X communications underlaying cellular networks. Assuming that the macro-cellular base station (MBS) sets the interference prices to protect itself from the V2X users (VUEs), the Stackelberg game was adopted to analyze the interaction between MBS and VUEs, where the former acts as a leader and the latter act as followers. For MBS, we aimed at maximizing its utility from interference revenue while considering the cost of interference. Meanwhile, the VUEs aimed at maximizing their utilities per unit power consumption. We analyzed the Stackelberg model and obtained the optimal prices for MBS and optimal transmit powers for VUEs. Simulation results demonstrated the superiority of the proposed Stackelberg game-based power allocation scheme in comparison with the traditional power allocation strategy. Meanwhile, the proposed scheme achieved a better trade-off between economic profit and power consumption.
机译:超可靠的低延迟通信(URLLC)是预期用于5G的三种使用场景之一,它在车对所有(V2X)通信的高级应用中起着重要作用。在本文中,研究了基于蜂窝网络的V2X通信中基于Stackelberg游戏的功率分配问题。假设宏蜂窝基站(MBS)设置了干扰价格以保护自己免受V2X用户(VUE)的侵害,则采用Stackelberg游戏来分析MBS和VUE之间的相互作用,其中前者充当领导者,后者充当领导者充当追随者。对于MBS,我们旨在从干扰收益中最大化其效用,同时考虑干扰成本。同时,VUE旨在最大程度地提高单位功耗的效用。我们分析了Stackelberg模型,并获得了MBS的最佳价格和VUE的最佳发射功率。仿真结果表明,与传统的功率分配策略相比,该基于Stackelberg游戏的功率分配方案具有优越性。同时,提出的方案在经济利润和功耗之间取得了更好的权衡。

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