In this correspondence, a novel simultaneous transmitting and reflecting (STAR) reconfigurable intelligent surfaces (RISs) design is proposed in a non-orthogonal multiple access (NOMA) enhanced coordinated multi-point transmission (CoMP) network. Based on the insights of signal-enhancement-based (SEB) and signal-cancellation-based (SCB) designs, we propose a novel simultaneous-signal-enhancement-and-cancellation-based (SSECB) design, where the inter-cell interferences and desired signals can be simultaneously eliminated and boosted. Our simulation results demonstrate that: i) the inter-cell interference can be perfectly eliminated, and the desired signals can be enhanced simultaneously with the aid of a large number of RIS elements; ii) the proposed SSECB design is capable of outperforming the conventional SEB and SCB designs.
翻译:在这一通信中,在非垂直多点存取(NOMA)强化协调多点传输(COMP)网络中,提出了新型同步传输和反映(STAR)可重新配置智能表面(RIS)设计的新颖的同步传输和反射(STAR)同步传输和反射(SCB)设计。根据基于信号增强(SEB)和基于信号取消(SCB)的设计的洞察力,我们提出了新型的同步信号增强(SSSECB)设计,该设计可以同时消除和提升细胞间干扰和预期信号。我们的模拟结果表明:(i)细胞间干扰可以完全消除,而期望的信号可以在大量RIS要素的帮助下同时增强; (ii) 拟议的SECB设计能够超越常规的SEB和SCB设计。