论文标题

可重构智能表面的硬件体系结构,具有最小的活动元素,用于明确的频道估计

A Hardware Architecture for Reconfigurable Intelligent Surfaces with Minimal Active Elements for Explicit Channel Estimation

论文作者

Alexandropoulos, George C., Vlachos, Evangelos

论文摘要

智能表面包括具有成本效益,几乎被动和可重新配置的单元元素,由于它们具有完全可编程的无线环境的潜力,最近引起了人们的兴趣。当在感兴趣的部署领域的各个对象上涂层时,他们设想为各种沟通目标提供环境情报。为了实现这一总体目标,涉及可重新配置的智能表面(RISS)的渠道必须是原则上估算的。但是,这是一项艰巨的任务,当前可用的硬件RIS架构需要使用RIS辅助无线通信的网络节点之间的冗长培训期。在本文中,我们提出了一种新颖的RIS架构,包括任何数量的被动反射元素,可调节配置的简单控制器以及用于基带测量的单个射频(RF)链。利用这种体系结构并假设Beamspace域中的无线通道稀疏,我们提出了一种交替的优化方法,以明确估计单个RF链的RIS元素的通道增益。代表性仿真结果证明了各种训练长度和反射单元元素数量的渠道估计精度和可实现的端到端性能。

Intelligent surfaces comprising of cost effective, nearly passive, and reconfigurable unit elements are lately gaining increasing interest due to their potential in enabling fully programmable wireless environments. They are envisioned to offer environmental intelligence for diverse communication objectives, when coated on various objects of the deployment area of interest. To achieve this overarching goal, the channels where the Reconfigurable Intelligent Surfaces (RISs) are involved need to be in principle estimated. However, this is a challenging task with the currently available hardware RIS architectures requiring lengthy training periods among the network nodes utilizing RIS-assisted wireless communication. In this paper, we present a novel RIS architecture comprising of any number of passive reflecting elements, a simple controller for their adjustable configuration, and a single Radio Frequency (RF) chain for baseband measurements. Capitalizing on this architecture and assuming sparse wireless channels in the beamspace domain, we present an alternating optimization approach for explicit estimation of the channel gains at the RIS elements attached to the single RF chain. Representative simulation results demonstrate the channel estimation accuracy and achievable end-to-end performance for various training lengths and numbers of reflecting unit elements.

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