The envisioned sixth-generation (6G) of wireless networks will involve an intelligent integration of communications and computing, thereby meeting the urgent demands of diverse applications. To realize the concept of the smart radio environment, reconfigurable intelligent surfaces (RISs) are a promising technology for offering programmable propagation of impinging electromagnetic signals via external control. However, the purely reflective nature of conventional RISs induces significant challenges in supporting computation-based applications, e.g., wave-based calculation and signal processing. To fulfil future communication and computing requirements, new materials are needed to complement the existing technologies of metasurfaces, enabling further diversification of electronics and their applications. In this event, we introduce the concept of reconfigurable intelligent computational surface (RICS), which is composed of two reconfigurable multifunctional layers: the `reconfigurable beamforming layer' which is responsible for tunable signal reflection, absorption, and refraction, and the `intelligence computation layer' that concentrates on metamaterials-based computing. By exploring the recent trends on computational metamaterials, RICSs have the potential to make joint communication and computation a reality. We further demonstrate two typical applications of RICSs for performing wireless spectrum sensing and secrecy signal processing. Future research challenges arising from the design and operation of RICSs are finally highlighted.
翻译:设想的第六代无线网络(6G)将涉及智能整合通信和计算,从而满足各种应用的紧迫需求。为了实现智能无线电环境的概念,可重新配置智能表面(RIS)是一个有希望的技术,通过外部控制提供可编程传播侵入电磁信号的可编程传播技术。然而,常规RIS的纯反射性质在支持基于计算的应用(例如,基于波的计算和信号处理)方面带来了重大挑战。为了满足未来的通信和计算要求,需要新的材料来补充现有的元表面技术,使电子及其应用进一步多样化。在这种情况下,我们引入了可重新配置智能计算表面(RIMS)的概念,它由两个可编程可编程的多功能层组成:“可编程的光谱层”负责金枪鱼信号的反射、吸收和折射层,以及集中用于基于元材料的计算的“情报计算层”。我们通过探索最近关于计算元材料的趋势,使电子产品及其应用进一步多样化。我们引入了可编程智能计算(RISS)的可调智能计算模型概念概念概念。我们最终展示了用于进行无线性分析的典型的模型和信号分析。