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Max–Min Weighted Downlink SINR With Uplink SINR Constraints for Full-Duplex MIMO Systems

机译:带有上行SINR约束的全双工MIMO系统的最大-最小加权下行SINR

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In this paper, we investigate a max-min weighted signal-to-interference-plus-noise-ratio (SINR) problem in a full-duplex multiuser multiple-input-multiple-output system, where a full-duplex-capable base station (BS) equipped with multiple antennas communicates with multiple half-duplex downlink and uplink users under the same system resources. Specifically, we consider a practical scenario where the downlink minimum weighted SINR is maximized under specific SINR constraints for uplink users. Moreover, the optimization is conducted by jointly considering the BS transmit power, the transmit power of uplink users, and BS transmit and receive beamforming. This optimization problem is, therefore, subject to multiple uplink SINR constraints and multiple transmit power constraints. Due to the SINR constraints, negative matrix components arise and hence the optimization problem cannot be directly solved by the standard approach, i.e., Perron-Frobenius theory. We have provided an explicit iterative scheme to solve this joint optimization problem with a strict proof. The proposed algorithm is proved to converge to Karush-Kuhn-Tucker points. Simulation results show that our proposed algorithm has a fast convergence rate and leads to a better performance compared with other optimization techniques that do not jointly consider all parameters.
机译:在本文中,我们研究了在具有全双工功能的基站的全双工多用户多输入多输出系统中的最大-最小加权信号干扰干扰加噪声比(SINR)问题。 (BS)配备有多个天线,在同一系统资源下与多个半双工下行链路和上行链路用户进行通信。具体而言,我们考虑一种实际情况,其中在针对上行链路用户的特定SINR约束下,下行链路最小加权SINR最大化。此外,通过联合考虑BS发射功率,上行链路用户的发射功率以及BS发射和接收波束成形来进行优化。因此,该优化问题受到多个上行链路SINR约束和多个发射功率约束。由于SINR的限制,出现了负矩阵分量,因此无法通过标准方法即Perron-Frobenius理论直接解决优化问题。我们提供了一个明确的迭代方案,以严格的证明来解决此联合优化问题。证明该算法收敛于Karush-Kuhn-Tucker点。仿真结果表明,与未同时考虑所有参数的其他优化技术相比,本文提出的算法收敛速度快,性能更好。

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