In this letter, we consider the scenario of decode-and-forward relay network with reconfigurable intelligent surface (RIS)-assisted source and relays in the presence of interference. We derive approximate closed-form expression for the system outage probability assuming Rayleigh fading channels and opportunistic relaying scheme. In addition, we study the system behavior at the high signal-to-noise ratio (SNR) regime, where the diversity order and coding gain are obtained and analyzed. The results show that the system can achieve a diversity order of Gd = min(N1,N2)K, where N1 and N2 are the numbers of reflecting elements at the source and relays, respectively, and K is the number of relays. In addition, findings illustrate that for the same diversity order, utilizing one relay with multiple reflecting elements gives better performance than utilizing multiple relays with a single reflecting element. Furthermore, findings illustrate that the interference at the destination is more severe on the system performance than the interference at the relays. Therefore, under the same interference powers and for a fixed number of relays K, results show that the case where the first hop is dominating the performance N1 < N2 gives better results in terms of coding gain than the case where N2 < N1.
翻译:在这封信中,我们考虑了在干扰情况下使用可重新配置智能表面(RIS)辅助源和继电器的解码和前向转发中继网络的情况。我们假定雷利管道和机会性继电器计划会消失,则得出系统失灵概率的近似封闭式表达方式;此外,我们还根据高信号-噪音比率(SNR)制度研究系统的行为,在这种制度下,获得并分析多样性顺序和编码收益;结果显示,该系统可以达到Gd = min(N1,N2)K(其中N1和N2分别反映源和继电器的元素数量,而K是继电器的数量。此外,调查结果表明,对于同样的多样性顺序,使用一个带有多个反射元素的继电器比使用带有单一反射元素的多个继电器更能。此外,调查结果表明,在目的地对系统性能的干扰比继电器干扰更严重。因此,根据同样的干扰力和固定数量的N1 N1,结果显示,在第一波段显示,性效果优于N2的状态。