联合发射和反射波束形成的irs辅助MISO广播信道最大最小公平性

Caihong Kai, Wenqi Ding, W. Huang
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引用次数: 7

摘要

智能反射面(IRSs)在未来无线蜂窝通信系统中的潜在应用推动了对超表面的研究,以实现额外的空间自由度,其中IRS用于增强所需的信号强度并抑制干扰。本文利用IRS提供的附加设计自由度,在受反射波束形成矢量单位模量约束的情况下,共同优化BS处的发射波束形成矢量和IRS处的反射波束形成矢量,使IRS辅助多用户多输入单输出广播信道(MISO-BC)中的最小速率最大化。为了解决非凸优化问题,我们提出了一种基于交替优化的高效算法。特别地,我们利用二阶锥问题(SOCP)优化发射波束形成矢量,利用半定松弛(SDR)优化反射波束形成矢量。数值结果表明,与不使用IRS的基准方案相比,使用IRS可显著提高SINR值。
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Max-Min Fairness in IRS-Aided MISO Broadcast Channel via Joint Transmit and Reflective Beamforming
The potential application of intelligent reflecting surfaces (IRSs) for future wireless cellular communication systems has motivated the study of metasurface for achieving additional space degree of freedom, where IRS is used to enhance the desired signal strength and suppress the interference. In this paper, by using the additional design degree of freedom provided by the IRS, we jointly optimize the transmit beamforming vector at the BS and the reflective beamforming vector at the IRS to maximize the minimum rate in the IRS-aided multi-user multiple-input-single-output broadcast channel (MISO-BC), subject to the unit modulus constraints of the reflective beamforming vector. In order to solve the non-convex optimization problem, we propose an efficient algorithm based on alternating optimization. In particular, we optimize the transmit beamforming vectors via the second-order cone problem (SOCP) and reflective beamforming vector by using the semi-definite relaxation (SDR). Numerical results show that the use of IRS leads to significant higher SINR values than benchmark schemes without IRS.
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