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Performance analysis of zero-forcing-based multiple-input multiple-output two-way relaying in overlay device-to-device communications

机译:覆盖设备间通信中基于零强迫的多输入多输出双向中继的性能分析

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In this study, the authors conduct the performance evaluation and resource allocation for two-way multiple-input multiple-output-based device-to-device (D2D) communications overlaying a cellular network. The considered system model comprises of a base station, a mobile user, and a pair of D2D users, where each of them is equipped with multiple antennas and employs transmit/receive zero forcing. Based on overlaying approach, both D2D and cellular communications take place bidirectionally by employing analogue network coding with a best selected D2D user as two-way relay for the cellular links. The authors analyse the outage performance of cellular and D2D systems in a Rayleigh fading environment. They also deduce asymptotic outage behaviour of cellular system and highlight the achievable diversity order. In addition, they derive the expressions of ergodic sum rate for both the systems. Above all, they provide a selection algorithm for the best relaying D2D user and describe feasible range of power splitting factor to maximise the data rate of cellular system for a given data rate of D2D system. Numerical and simulation results validate the authors’ theoretical findings and illustrate the performance gains of the considered scheme under various antenna configurations.
机译:在这项研究中,作者对覆盖蜂窝网络的双向多输入多输出基于设备到设备(D2D)的通信进行了性能评估和资源分配。所考虑的系统模型包括一个基站,一个移动用户和一对D2D用户,其中每个用户都配备有多个天线并采用发射/接收迫零。基于覆盖方法,D2D和蜂窝通信都是通过采用模拟网络编码双向进行的,模拟网络编码采用了最佳选择的D2D用户作为蜂窝链路的双向中继。作者分析了在瑞利衰落环境中蜂窝和D2D系统的中断性能。他们还推断出细胞系统的渐进性中断行为,并强调了可实现的多样性顺序。另外,他们推导了两个系统的遍历总和率的表达式。最重要的是,它们为最佳的D2D中继用户提供了一种选择算法,并描述了功率分配因子的可行范围,以在给定D2D系统数据速率下最大化蜂窝系统的数据速率。数值和仿真结果验证了作者的理论发现,并说明了所考虑方案在各种天线配置下的性能增益。

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