Reconfigurable intelligent surfaces (RISs) have recently emerged as a promising technology that can achieve high spectrum and energy efficiency for future wireless networks by integrating a massive number of low-cost and passive reflecting elements. An RIS can manipulate the properties of an incident wave, such as the frequency, amplitude, and phase, and, then, reflect this manipulated wave to a desired destination, without the need for complex signal processing. In this paper, the asymptotic optimality of achievable rate in a downlink RIS system is analyzed under a practical RIS environment with its associated limitations. In particular, a passive beamformer that can achieve the asymptotic optimal performance by controlling the incident wave properties is designed, under a limited RIS control link and practical reflection coefficients. In order to increase the achievable system sum-rate, a modulation scheme that can be used in an RIS without interfering with existing users is proposed and its average symbol error ratio is asymptotically derived. Moreover, a new resource allocation algorithm that jointly considers user scheduling and power control is designed, under consideration of the proposed passive beamforming and modulation schemes. Simulation results show that the proposed schemes are in close agreement with their upper bounds in presence of a large number of RIS reflecting elements thereby verifying that the achievable rate in practical RISs satisfies the asymptotic optimality.
翻译:重新配置的智能表面(RIS)最近作为一种大有希望的技术出现,它能够通过整合大量低成本和被动反射元素,为未来的无线网络实现高频谱和能源效率。RIS可以操纵事件波的特性,例如频率、振幅和阶段,然后将这一经过操纵的波反映到一个理想的目的地,而不需要复杂的信号处理。在本文件中,在实际的RIS环境及其相关限制下,对低链接系统中可实现的速率的无症状最佳性能进行了分析。特别是,在有限的RIS控制链接和实际反射系数下,能够通过控制事件波特性实现无症状最佳性能的被动信号显示器。为了提高可实现的系统总速率,提出了一种调制方案,可以在不干扰现有用户的情况下用于抗辐射系统,其平均符号误差率比率也是从中得出的。此外,在考虑拟议的被动制成和动力控制用户最佳性能的新的资源分配算法,在拟议的被动制成中,通过控制波控波波波波波波度最佳性能反应率方案中,模拟了可实现的升级方案。