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Joint Mode Selection and Resource Allocation for D2D-Enabled NOMA Cellular Networks

机译:启用D2D的NOMA蜂窝网络的联合模式选择和资源分配

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The 5G cellular network employs non-orthogonal multiple access (NOMA) to enhance network connectivity and capacity, and device-to-device (D2D) communications to improve spectrum efficiency. However, the underlay D2D communications may destroy the execution condition for the successive interference cancellation (SIC) decoding of NOMA cellular networks by introducing the extra interference, which degrades the cellular transmission reliability. Thus, we develop the interlay mode as a special D2D mode for NOMA system, which enables the power domain multiplexing of the D2D pair and cellular users to eliminate the strong interference between them by the SIC decoding. When D2D pair conducts the selection between the interlay mode and underlay mode, the SIC decoding constraint should be satisfied at both D2D receiver and NOMA base station. In order to maximize the system sum rate while meeting the SIC decoding constraint, we propose a joint D2D mode selection and resource allocation scheme with interlay mode, which can be formulated as a combinatorial optimization problem. To tackle the combinatorial nature of mode selection and spectrum assignment, we first prove that the original problem can be reformulated as a maximum weight clique problem, and then propose a graph-based algorithm by applying branch-and-bound method to obtain its optimal solution. Finally, simulation results are provided to demonstrate that the interlay mode along with the proposed algorithms can coordinate D2D communications and NOMA cellular network to significantly improve the system sum rate and the D2D access rate.
机译:5G蜂窝网络采用非正交多址访问(NOMA)来增强网络连接性和容量,并采用设备到设备(D2D)通信来提高频谱效率。但是,底层D2D通信可能会通过引入额外干扰来破坏NOMA蜂窝网络的连续干扰消除(SIC)解码的执行条件,这会降低蜂窝传输的可靠性。因此,我们将交错模式开发为NOMA系统的一种特殊D2D模式,该模式使D2D对和蜂窝用户的功率域复用能够通过SIC解码消除它们之间的强烈干扰。当D2D对在插入模式和下层模式之间进行选择时,在D2D接收器和NOMA基站上都应满足SIC解码约束。为了在满足SIC解码约束的同时最大程度地提高系统求和率,我们提出了一种采用交错模式的联合D2D模式选择和资源分配方案,可以将其表示为组合优​​化问题。为了解决模式选择和频谱分配的组合性质,我们首先证明可以将原始问题重新构造为最大权重集团问题,然后通过应用分支定界方法提出基于图的算法以获得最优解。最后,提供了仿真结果,证明了交错模式和所提出的算法可以协调D2D通信和NOMA蜂窝网络,从而显着提高系统求和率和D2D访问率。

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