This paper proposes a general optimization framework to improve the spectral and energy efficiency (EE) of ultra-reliable low-latency communication (URLLC) reconfigurable intelligent surface (RIS)-assisted interference-limited systems with finite block length (FBL). This framework can be applied to any interference-limited system with treating interference as noise as the decoding strategy at receivers. Additionally, the framework can solve a large variety of optimization problems in which the objective and/or constraints are linear functions of the rates and/or EE of users. We consider a multi-cell broadcast channel as an example and show how this framework can be specialized to solve the minimum-weighted rate, weighted sum rate, global EE and weighted EE of the system. In addition to regular RIS, we consider simultaneous-transfer-and-receive (STAR)-RIS in which each passive RIS component can simultaneously reflect and transmit signals. We make realistic assumptions regarding the (STAR-)RIS by considering three different feasibility sets for the components of either regular RIS or STAR-RIS. We show that RIS can substantially increase the spectral and EE of RIS-assisted URLLC systems if the reflecting coefficients are properly optimized. Moreover, we show that STAR-RIS can outperform a regular RIS when the regular RIS cannot cover all the users.
翻译:本文提出一个总体优化框架,以改善超可靠低延迟通信(URLLC)的光谱和能源效率(EE),这种光谱和节能通信(EE)是可调用的智能表面(RIS)辅助干涉(RIS)可调整的智能度有限系统(FBL),这一框架可适用于任何将干扰作为噪音处理作为接收器解码战略的干预有限系统。此外,该框架可以解决大量优化问题,其中目标和(或)限制是用户费率和(或)EEE的线性功能。我们认为多细胞广播频道是一个范例,并表明这一框架如何能够专门用来解决系统的最小加权速率、加权总和率、全球EEE和加权EE。除了常规的TRIS(STAR)-RI(S)外,我们考虑为常规的ISIS(STAR-RI)系统提供三种不同的可行性组合。 我们表明,如果我们定期的ERIS(ERIS)用户不能适当展示其ERIS(ERIS-ERS-ERS-S-S-S-S-A),那么常规的ERIS-RA-RA-RA-S-S-S-RIS-SAFS-S-S-S-S-S-S-S-SIRAFAFS-SIR-SIR-SBRAFS-S-S-S-S-SBRBS-S-S-S-S-SBRBRFS-S-S-S-S-SBS-S-SBAR能够能够正确显示正常的S-S-SAR-SAR-SIR-SIR-SIR-S-S-S-S-S-S-S-S-SAR-S-S-S-S-S-S-S-S-S-S-S-S-S-SAR-SAR-S-S-S-S-S-SDRFARDRBARDRFADRFAFSDRFAFS-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-SDRAS-S-S-S-S