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Power Allocation for Underlay Device-to-Device Communication Over Multiple Channels

机译:在多个通道上进行底层设备到设备通信的功率分配

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In underlay device-to-device (D2D) communication, a D2D pair reuses the cellular spectrum, causing interference to existing cellular users. The achieved D2D rate and the added interference to cellular users need to be jointly considered for optimal resource and power allocations. Unlike most existing work which only consider the simplified scenario of assigning each D2D pair a single channel or resource block (RB), we consider multiple RBs from different cellular users can be assigned to each D2D pair. We formulate the problem of optimal power allocation over multiple RBs at the D2D transmitter to maximize the sum-rate of D2D and cellular users, under the D2D transmitter power constraint and minimum signal-to-noise-and-interference ratio (SINR) requirement at each reused RB for all affected cellular users in all cells. To further lower the required overhead in a practical setting, we consider a second optimization problem for power allocation solution to maximize the D2D rate under the same constraints as the sum-rate maximization problem. We obtain the asymptotic power solution for the sum-rate maximization and the semiclosed-form optimal power solution for the D2D rate maximization. Our proposed optimization solutions are applicable to both uplink and downlink cellular spectrum sharing as well as to mutlicell with multiple D2D pairs scenarios. Our simulation studies demonstrates the effectiveness of the two proposed methods for both uplink and downlink resource sharing, and further shed light into how the maximum rate is impacted by the system parameters such as available D2D transmit power, number of D2D pairs, minimum SINR requirements, and the cell size.
机译:在底层设备到设备(D2D)通信中,D2D对将重用蜂窝频谱,从而对现有的蜂窝用户造成干扰。为了最佳的资源和功率分配,需要共同考虑获得的D2D速率和对蜂窝用户的额外干扰。与大多数现有工作仅考虑为每个D2D对分配单个信道或资源块(RB)的简化方案不同,我们认为可以将来自不同蜂窝用户的多个RB分配给每个D2D对。我们提出了在D2D发射机功率约束和最小信噪比(SINR)要求下,D2D发射机在多个RB上最优功率分配的问题,以最大化D2D和蜂窝用户的总速率。每个小区中所有受影响的蜂窝用户的每个重用RB。为了进一步降低实际设置中的所需开销,我们考虑了功率分配解决方案的第二个优化问题,以在与和率最大化问题相同的约束下最大化D2D速率。我们获得了用于求和率最大化的渐近幂解和用于D2D率最大化的半封闭形式最优幂解。我们提出的优化解决方案适用于上行链路和下行链路蜂窝频谱共享以及具有多个D2D对方案的多小区。我们的仿真研究证明了两种建议的上行链路和下行链路资源共享方法的有效性,并进一步阐明了最大速率如何受到系统参数(例如可用D2D发射功率,D2D对的数量,最小SINR要求,和像元大小。

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