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Power control for underlay in-band spectrum sharing in device-to-device communications

机译:设备间通信中底层带内频谱共享的功率控制

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In this work, we consider a cellular cell with D2D links being activated. Besides, the transmission scheme is assumed to be OFDM. With the underlay in-band spectrum sharing scheme, the D2D links can access the spectrum occupied by the cellular links. Hence, the D2D links may interfere with the existing cellular links. Moreover, since the D2D links' channels could overlap, the D2D links are modeled as parallel Gaussian interference channels. Our objective is to design a power control algorithm to maintain the existing cellular links' performance and to maximize each D2D links' transmission rate. The existing cellular links' performance is measured by the outage probability of each subchannel. We formulate a generalized Nash game which is analyzed with the variational inequality theory. The players of the game is the D2D links and the coupled constraints of the players are the outage probability constraints of the cellular links. However, the problem is a non-convex one. By observing the problem structure, we are able to propose an efficient heuristic algorithm which can be implemented distributively. In the end, the performance of the algorithm is demonstrated with simulation results.
机译:在这项工作中,我们考虑激活具有D2D链接的蜂窝单元。此外,假设传输方案为OFDM。利用底层带内频谱共享方案,D2D链路可以访问蜂窝链路占用的频谱。因此,D2D链路可能会干扰现有的蜂窝链路。此外,由于D2D链路的信道可能重叠,因此D2D链路被建模为并行高斯干扰信道。我们的目标是设计一种功率控制算法,以维持现有蜂窝链路的性能并最​​大化每个D2D链路的传输速率。现有蜂窝链路的性能通过每个子信道的中断概率来衡量。我们制定了广义纳什博弈,并用变分不等式理论进行了分析。游戏的玩家是D2D链接,而玩家的耦合约束是蜂窝链接的中断概率约束。但是,问题是非凸的。通过观察问题的结构,我们能够提出一种可以分布式实现的高效启发式算法。最后,通过仿真结果证明了该算法的性能。

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