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Joint Uplink and Downlink Resource Allocation for D2D Communications System

机译:D2D通信系统的联合上行链路和下行链路资源分配

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In cellular networks, device-to-device communications can increase the spectrum efficiency, but some conventional schemes only consider uplink or downlink resource allocation. In this paper, we propose the joint uplink and downlink resource allocation scheme which maximizes the system capacity and guarantees the signal-to-noise-and-interference ratio of both cellular users and device-to-device pairs. The optimization problem is formulated as a mixed integer nonlinear problem that is usually NP hard. To achieve the reasonable resource allocation, the optimization problem is divided into two sub-problems including power allocation and channel assignment. It is proved that the objective function of power control is a convex function, in which the optimal transmission power can be obtained. The Hungarian algorithm is developed to achieve joint uplink and downlink channel assignment. The proposed scheme can improve the system capacity performance and increase the spectrum efficiency. Numerical results reveal that the performance of the proposed scheme of jointly uplink and downlink is better than that of the schemes for independent allocation.
机译:在蜂窝网络中,设备到设备的通信可以提高频谱效率,但是某些常规方案仅考虑上行链路或下行链路资源分配。在本文中,我们提出了一种联合的上行链路和下行链路资源分配方案,该方案可最大化系统容量并保证蜂窝用户和设备对设备对的信噪比。将优化问题表述为通常是NP难的混合整数非线性问题。为了实现合理的资源分配,优化问题分为两个子问题,包括功率分配和信道分配。证明了功率控制的目标函数是凸函数,可以得到最优的传输功率。开发匈牙利算法以实现联合的上行链路和下行链路信道分配。所提出的方案可以提高系统容量性能并提高频谱效率。数值结果表明,所提出的上下行联合方案的性能优于独立分配方案。

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