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Robust power optimization for device-to-device communication in a multi-cell network under partial CSI

机译:针对部分CSI下的多小区网络中设备到设备通信的强大功率优化

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For device-to-device (D2D) underlaid cellular networks, the perfect channel state information (CSI) may not be available at the base station (BS). In this work, under an assumption of partial CSI, we study the problem of maximizing the expected sum rate for a cellular user (CU) and a D2D pair, with receive beamforming at the BS, subject to minimum SINR requirements for both the CU and D2D pair, per-node maximum power, and inter-cell interference constraints in multiple neighboring cells. We solve this non-convex joint optimization problem in two steps. We first consider the D2D admissibility problem to determine whether the D2D pair can reuse the channel resource of the CU. We then propose a robust power control algorithm using a ratio-of-expectation approximation to maximize the expected sum rate. For benchmarking, we further provide an upper bound on the maximum expected sum rate. Simulation results show that our proposed solution gives performance close to the upper bound.
机译:对于设备到设备(D2D)底层蜂窝网络,完美的信道状态信息(CSI)在基站(BS)上可能不可用。在这项工作中,在假设部分CSI的情况下,我们研究了最大化蜂窝用户(CU)和D2D对的预期总和率的问题,并在BS处接收波束成形,但要同时满足CU和D2D的最低SINR要求。 D2D对,每个节点的最大功率以及多个相邻小区中的小区间干扰约束。我们分两步解决此非凸联合优化问题。我们首先考虑D2D可允许性问题,以确定D2D对是否可以重用CU的信道资源。然后,我们提出了一种使用期望比率近似值的鲁棒功率控制算法,以使期望的总和率最大化。为了进行基准测试,我们进一步提供了最大预期总和率的上限。仿真结果表明,我们提出的解决方案使性能接近上限。

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