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Precoding and power allocation algorithms for device-to-device communication in massive MEMO networks

机译:大规模MEMO网络中设备间通信的预编码和功率分配算法

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摘要

Device-to-device communication (D2D) and massive multiple input multiple output (MIMO) systems are two emerging technologies that are being considered to improve the performance of next generation wireless cellular systems. In D2D, two mobile nodes communicate directly without traversing the base station (BS). Consequently, interference management, coordination, and/or cancellation techniques have to be adopted to target the problem of mutual interference between the D2D devices and the BS (or the normal mobiles nodes connected to the BS). In this paper, we investigate the problem of BS precoder design and D2D devices power allocation in the downlink of a single-cell network assuming existence of D2D devices as well as massive MIMO at the BS. We propose algorithms to maximize the sum of the achievable data rates of the D2D pairs while maintaining quality of service constraints on the cellular user equipment, which communicate normally with the BS. We also propose two algorithms for the precoding problem; the first is based on semi-definite programming while the second is based on gradient descent algorithms. Moreover, we investigate two solutions for the power allocation problem; the first solves an approximate convex optimization problem iteratively while the second is a suboptimal, but far less complex, heuristic. Finally, we propose a technique to apply the mentioned solutions when only partial channel state information is available at the BS. Simulation results show that the proposed solutions are superior to the conventional precoding and power allocation schemes.
机译:设备到设备通信(D2D)和大规模多输入多输出(MIMO)系统是正在考虑用来提高下一代无线蜂窝系统性能的两种新兴技术。在D2D中,两个移动节点直接通信,而无需遍历基站(BS)。因此,必须采用干扰管理,协调和/或消除技术来解决D2D设备和BS(或连接到BS的普通移动节点)之间的相互干扰问题。在本文中,我们研究了在基站存在D2D设备以及大规模MIMO的情况下,单小区网络的下行链路中BS预编码器设计和D2D设备功率分配的问题。我们提出了在保持与基站正常通信的蜂窝用户设备上的服务质量约束的同时最大化D2D对可实现数据速率之和的算法。我们还针对预编码问题提出了两种算法:第一个基于半定程序设计,第二个基于梯度下降算法。此外,我们针对功率分配问题研究了两种解决方案:第一个迭代地解决了一个近似凸优化问题,而第二个是次优的,但复杂程度远不如启发式。最后,我们提出了一种在BS只能获取部分信道状态信息时应用上述解决方案的技术。仿真结果表明,所提出的解决方案优于传统的预编码和功率分配方案。

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