论文标题

主动IRS协助无线通信:新的混合体系结构和元素分配优化

Active-Passive IRS aided Wireless Communication: New Hybrid Architecture and Elements Allocation Optimization

论文作者

Kang, Zhenyu, You, Changsheng, Zhang, Rui

论文摘要

智能反射表面(IRS)已成为一种有前途的技术,可以通过动态控制无线电信号传播环境来增强无线通信网络覆盖范围和容量。与仅考虑主动或被动IRS的现有作品相反,我们在本文中提出了一种新的混合主动性IRS体系结构,该体系结构包括主动和被动反映元素,从而灵活地实现了它们的合并优势。在只有统计渠道状态信息(CSI)的实用渠道设置下,我们可以在多用户通信系统中研究混合IRS设计。具体而言,我们制定了一个优化问题,以最大程度地提高最差的用户的可实现的颈动性能力,通过设计基于统计CSI的混合IRS界限和主动/被动元件分配,但要受到主动扩增因子的各种实际限制,并受到各种实际限制。为了解决这个具有挑战性的问题,我们首先以更简单的形式近似偏僻的能力,然后提出有效的算法以最佳地解决该问题。此外,我们表明,对于具有所有渠道的特殊情况(LOS),只有当总部署预算足够小时,只有主动元素才能部署,而当预算增加并超过一定的门槛时,主动和被动元素应以减少的数量比率部署。最后,提出了数值结果,该结果证明了拟议的混合IRS体系结构的性能提高及其对传统方案的最佳设计,仅在各种实际系统设置下使用主动/被动IRS。

Intelligent reflecting surface (IRS) has emerged as a promising technology to enhance the wireless communication network coverage and capacity by dynamically controlling the radio signal propagation environment. In contrast to the existing works that considered active or passive IRS only, we propose in this paper a new hybrid active-passive IRS architecture that consists of both active and passive reflecting elements, thus achieving their combined advantages flexibly. Under a practical channel setup with Rician fading where only the statistical channel state information (CSI) is available, we study the hybrid IRS design in a multi-user communication system. Specifically, we formulate an optimization problem to maximize the achievable ergodic capacity of the worst-case user by designing the hybrid IRS beamforming and active/passive elements allocation based on the statistical CSI, subject to various practical constraints on the active-element amplification factor and amplification power consumption, as well as the total active and passive elements deployment budget. To solve this challenging problem, we first approximate the ergodic capacity in a simpler form and then propose an efficient algorithm to solve the problem optimally. Moreover, we show that for the special case with all channels to be line-of-sight (LoS), only active elements need to be deployed when the total deployment budget is sufficiently small, while both active and passive elements should be deployed with a decreasing number ratio when the budget increases and exceeds a certain threshold. Finally, numerical results are presented which demonstrate the performance gains of the proposed hybrid IRS architecture and its optimal design over the conventional schemes with active/passive IRS only under various practical system setups.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源