In this paper, a cyclic-prefixed single-carrier (CPSC) transmission scheme with phase shift keying (PSK) signaling is presented for broadband wireless communications systems empowered by a reconfigurable intelligent surface (RIS). In the proposed CPSC-RIS, the RIS is configured according to the transmitted PSK symbols such that different cyclically delayed versions of the incident signal are created by the RIS to achieve cyclic delay diversity. A practical and efficient channel estimator is developed for CPSC-RIS and the mean square error of the channel estimation is expressed in closed-form. We analyze the bit error rate (BER) performance of CPSC-RIS over frequency-selective Nakagami-$m$ fading channels. An upper bound on the BER is derived by assuming the maximum-likelihood detection. Furthermore, by resorting to the concept of index modulation (IM), we propose an extension of CPSC-RIS, termed CPSC-RIS-IM, which enhances the spectral efficiency. In addition to conventional constellation information of PSK symbols, CPSC-RIS-IM uses the full permutations of cyclic delays caused by the RIS to carry information. A sub-optimal receiver is designed for CPSC-RIS-IM to aim at low computational complexity. Our simulation results in terms of BER corroborate the performance analysis and the superiority of CPSC-RIS(-IM) over the conventional CPSC without an RIS and orthogonal frequency division multiplexing with an RIS.
翻译:本文介绍了由可重新配置的智能表面(RIS)增强的宽带无线通信系统,其信号是环形固定的单载器(CPSC)传输系统。在拟议的CPSC-RIS中,RIS是根据所传输的PSK符号配置的,以便通过RIS生成不同周期性延迟的事故信号,以实现周期性延迟多样性。为CPSC-RIS开发了一个实用有效的频道估计仪,频道估计的平均平方差以封闭式表示。我们分析了CPSC-RIS的比特差率(BER)相对于选择频率的Nakagami-m$mamofing通道的比特差率。在BARISC上的一个上限是根据所传输的PSC-RIS信号,通过采用指数调制概念,我们提议扩大CP-RIS-RIS,称为低级的光谱效率。除了PS-CIS-RIS的常规星座信息外, CPS-CIS-IRC-IM的高级值分析还利用了我们系统-RIS-RIS-IRC的高级分析结果的完整。