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MIMO Transmission Through Reconfigurable Intelligent Surface: System Design, Analysis, and Implementation

机译:通过可重新配置智能表面的MIMO传输:系统设计,分析和实施

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摘要

Reconfigurable intelligent surface (RIS) is a new paradigm that has great potential to achieve cost-effective, energy-efficient information modulation for wireless transmission, by the ability to change the reflection coefficients of the unit cells of a programmable metasurface. Nevertheless, the electromagnetic responses of the RISs are usually only phase-adjustable, which considerably limits the achievable rate of RIS-based transmitters. In this paper, we propose an RIS architecture to achieve amplitude-and-phase-varying modulation, which facilitates the design of multiple-input multiple-output (MIMO) quadrature amplitude modulation (QAM) transmission. The hardware constraints of the RIS and their impacts on the system design are discussed and analyzed. Furthermore, the proposed approach is evaluated using our prototype which implements the RIS-based MIMO-QAM transmission over the air in real time.
机译:可重新配置的智能表面(RIS)是一种新的范例,其具有巨大的潜力,可以实现无线传输的成本效益,节能的信息调制,通过改变可编程元表面的单元电池的反射系数。然而,RIS的电磁响应通常仅相位调节,这显着限制了基于RIS的变送器的可实现速率。在本文中,我们提出了RIS架构来实现幅度和相变调制,这有利于多输入多输出(MIMO)正交幅度调制(QAM)传输的设计。讨论并分析了RIS的硬件约束及其对系统设计的影响。此外,使用我们的原型评估所提出的方法,该原型是实时在空气中实现基于RIS的MIMO-QAM传输。

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