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Adaptive Transmission for Reconfigurable Intelligent Surface-Assisted OFDM Wireless Communications

机译:可重新配置智能表面辅助OFDM无线通信的自适应传输

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Reconfigurable intelligent surfaces (RISs) have recently emerged as an innovative technology for improving the coverage, throughput, and energy/spectrum efficiency of future wireless communications. In this paper, we propose a new transmission protocol for wideband RIS-assisted single-input multiple-output (SIMO) orthogonal frequency division multiplexing (OFDM) communication systems, where each transmission frame is divided into multiple sub-frames to execute channel estimation simultaneously with passive beamforming. As the training symbols are discretely distributed over multiple sub-frames, the channel state information (CSI) associated with RIS cannot be estimated at once. As such, we propose a new channel estimation method to progressively estimate the associated CSI over consecutive sub-frames, based on which the passive beamforming at the RIS is fine-tuned to improve the achievable rate for data transmission. In particular, during the channel training, the RIS plays two roles of embedding training reflection states for progressive channel estimation and performing passive beamforming for data transmission on the data tones. Based on the estimated CSI in each sub-frame, we formulate an optimization problem to maximize the average achievable rate by designing the passive beamforming at the RIS, which needs to balance the received signal power over different sub-carriers and different receive antennas. As the formulated problem is non-convex and thus difficult to solve optimally, we propose two efficient algorithms to find high-quality solutions. Simulation results validate the effectiveness of the proposed channel estimation and beamforming optimization methods. It is shown that the proposed joint channel estimation and passive beamforming scheme is able to drastically improve the average achievable rate and reduce the delay for data transmission as compared to existing schemes.
机译:可重新配置的智能表面(RISS)最近被出现为一种创新技术,可提高未来无线通信的覆盖率,吞吐量和频谱效率。在本文中,我们提出了一种新的传输协议,用于宽带RIS辅助单输入多输出(SIMO)正交频分复用(OFDM)通信系统,其中每个传输帧被分成多个子帧以同时执行信道估计用被动波束形成。由于训练符号以多个子帧分开分布,因此不能一次估计与RIS相关联的信道状态信息(CSI)。这样,我们提出了一种新的信道估计方法,以逐步估计连续子帧的相关CSI,基于RIS处的被动波束形成是微调的,以改善数据传输的可实现速率。特别地,在频道训练期间,RIS在逐行信道估计中嵌入训练反射状态并执行用于数据音调上的数据传输的被动波束成形的两个角色。基于每个子帧中的估计CSI,我们通过设计RIS的被动波束成形来制定优化问题,以最大化平均可实现的速率,这需要平衡不同子载波的接收信号功率和不同的接收天线。由于配制的问题是非凸,因此难以最佳地解决,我们提出了两个有效的算法来找到高质量的解决方案。仿真结果验证了所提出的信道估计和波束成形优化方法的有效性。结果表明,与现有方案相比,所提出的联合通道估计和被动波束形成方案能够大大提高平均可实现的速率并减少数据传输的延迟。

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