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Robust Design for Intelligent Reflecting Surface-Assisted MIMO-OFDMA Terahertz IoT Networks

机译:智能反射表面辅助MIMO-OFDMA Terahertz IoT网络的鲁棒设计

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Terahertz (THz) communication has been regarded as one promising technology to enhance the transmission capacity of future Internet-of-Things (IoT) users due to its ultrawide bandwidth. Nonetheless, one major obstacle that prevents the actual deployment of THz lies in its inherent huge attenuation. Intelligent reflecting surface (IRS) and multiple-input-multiple-output (MIMO) represent two effective solutions for compensating the large path loss in THz systems. In this article, we consider an IRS-aided multiuser THz MIMO system with orthogonal frequency-division multiple (OFDM) access, where the sparse radio frequency chain antenna structure is adopted for reducing the power consumption. The objective is to maximize the weighted sum rate via jointly optimizing the hybrid analog/digital beamforming at the base station (BS) and reflection matrix at the IRS. Since the analog beamforming and reflection matrix need to cater all users and subcarriers, it is difficult to directly solve the formulated problem, and thus, an alternatively iterative optimization algorithm is proposed. Specifically, the analog beamforming is designed by solving a MIMO capacity maximization problem, while the digital beamforming and reflection matrix optimization are both tackled using semidefinite relaxation (SDR) technique. Considering that obtaining perfect channel state information (CSI) is a challenging task in IRS-based systems, we further explore the case with the imperfect CSI for the channels from the IRS to users. Under this setup, we propose a robust beamforming and reflection matrix design scheme for the originally formulated nonconvex optimization problem. Finally, simulation results are presented to demonstrate the effectiveness of the proposed algorithms.
机译:Terahertz(Thz)沟通被认为是一个有希望的技术,以提高由于其超广域带宽而增强未来互联网的传输能力(IOT)。尽管如此,防止THz实际部署的一个主要障碍在于其固有的巨大衰减。智能反射表面(IRS)和多输入多输出(MIMO)代表了两个有效的解决方案,用于补偿THz系统中的大路径损耗。在本文中,我们考虑具有正交频率分割多(OFDM)访问的IRS辅助多用户THz MIMO系统,其中采用稀疏射频链天线结构来降低功耗。目的是通过在IRS处的基站(BS)和反射矩阵处共同优化加权和速率来最大化加权和速率。由于模拟波束形成和反射矩阵需要迎合所有用户和子载波,因此难以直接解决配制的问题,因此提出了替代迭代的优化算法。具体地,通过求解MIMO容量最大化问题来设计模拟波束形成,而数字波束形成和反射矩阵优化均使用半纤维弛豫(SDR)技术来解决。考虑到获得完美的频道状态信息(CSI)是基于IRS的系统中的一个具有挑战性的任务,我们进一步探索了来自IRS向用户的频道的不完美CSI的情况。在此设置下,我们提出了一种强大的波束形成和反射矩阵设计方案,用于最初配制的非凸化优化问题。最后,提出了仿真结果以证明所提出的算法的有效性。

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