Spectral Efficiency Maximization for Mixed-Structure Cognitive Radio Hybrid Wideband Millimeter-Wave Transceivers in Relay-Assisted Multi-User Multiple-Input Multiple-Output Systems

被引:2
|
作者
Mustafa, Hafiz Muhammad Tahir [1 ,2 ]
Baik, Jung-In [1 ,2 ]
Song, Hyoung-Kyu [1 ,2 ]
Adnan, Muhammad [3 ]
Awan, Waqar Majeed [4 ]
机构
[1] Sejong Univ, Dept Informat & Commun Engn, Seoul 05006, South Korea
[2] Sejong Univ, Dept Convergence Engn Intelligent Drone, Seoul 05006, South Korea
[3] Univ Management & Technol, Dept Comp Sci SST, Lahore 54770, Pakistan
[4] Univ Management & Technol, Dept Elect Engn, Lahore 54770, Pakistan
基金
新加坡国家研究基金会;
关键词
cognitive radio; decode-and-forward relay; hybrid wideband transceiver; millimeter-wave technology; MU-MIMO system; spectral efficiency maximization; MASSIVE MIMO; BEAMFORMING DESIGN; LOW-COMPLEXITY; PRECODING DESIGN; NETWORKS; COORDINATION; ARCHITECTURE; MANAGEMENT; MODEL; 6G;
D O I
10.3390/s24123713
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This paper proposes a cognitive radio network (CRN)-based hybrid wideband precoding for maximizing spectral efficiency in millimeter-wave relay-assisted multi-user (MU) multiple-input multiple-output (MIMO) systems. The underlying problem is NP-hard and non-convex due to the joint optimization of hybrid processing components and the constant amplitude constraint imposed by the analog beamformer in the radio frequency (RF) domain. Furthermore, the analog beamforming solution common to all sub-carriers adds another layer of design complexity. Two hybrid beamforming architectures, i.e., mixed and fully connected ones, are taken into account to tackle this problem, considering the decode-and-forward (DF) relay node. To reduce the complexity of the original optimization problem, an attempt is made to decompose it into sub-problems. Leveraging this, each sub-problem is addressed by following a decoupled design methodology. The phase-only beamforming solution is derived to maximize the sum of spectral efficiency, while digital baseband processing components are designed to keep interference within a predefined limit. Computer simulations are conducted by changing system parameters under different accuracy levels of channel-state information (CSI), and the obtained results demonstrate the effectiveness of the proposed technique. Additionally, the mixed structure shows better energy efficiency performance compared to its counterparts and outperforms benchmarks.
引用
收藏
页数:45
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