Dynamic-subarray with Quantized- and Fixed-phase Shifters for Terahertz Hybrid Beamforming

Author(s):  
Longfei Yan ◽  
Chong Han ◽  
Nan Yang ◽  
Jinhong Yuan
2020 ◽  
Vol 2020 ◽  
pp. 1-11
Author(s):  
Huu Trung Nguyen ◽  
Trung Tan Le ◽  
Trung Hien Nguyen

Multiple-input multiple-output (MIMO) antenna scheme is an effective technique for future terrestrial broadcasting systems such as digital video broadcasting-next-generation handheld (DVB-NGH) to overcome the limits on information theory of traditional single-antenna wireless communications without any additional bandwidth or increased transmit power. In this paper, we propose a hybrid beamforming scheme for dual-polarized MIMO spatial multiplexing DVB-NGH broadcasting systems. The system of interest makes use of phase shifters and amplitude attenuators for the digital-analog precoder at beamforming stage of the transmitter end to maximize the signal-to-noise ratio to increase the channel capacity of the DVB-NGH systems. At the receiver end, the maximum likelihood (ML) detector is used to evaluate the system performance. We consider the signal-to-interference-and-noise ratio (SINR) and the achievable average capacity for the DVB-NGH MIMO with various FFT sizes, number of transmit antennas, and different modulation schemes. The performance results on bit error rate, channel capacity, and beampatterns show that the proposed hybrid beamforming and dual-polarized MIMO spatial multiplexing schemes provide more robustness against signal interference by beamforming and/or nulling techniques. The simulation results also show that the proposed system achieves higher capacity than the existing MIMO schemes for the DVB-NGH systems.


Author(s):  
Joerg Eisenbeis ◽  
Yueheng Li ◽  
Pablo Ramos Lopez ◽  
Jan Fischer ◽  
Thomas Zwick

Author(s):  
Jung Ouk Kim ◽  
Hansol Kim ◽  
Boram An ◽  
Sujeong Kim ◽  
Chan-Ho Kim ◽  
...  

Author(s):  
SRINIVAS K ◽  
T Srinivasulu

Power consumption and hardware cost reduction with the use of hybrid beamforming in large-scale millimeter wave MIMO systems. The large dimensional analog precoding integrates with the hybrid beamforming based on the phase shifters including digital precoding with lower dimensionality. The reduction of Euclidean distance between the hybrid precoder and fully digital is the major problem to overcome the minimization of resultant spectral efficiency. The issue formulates as a fully digital precoder’s matrix factorization problem based on the analog RF precoder matrix and the digital baseband precoder matrix. An additional element-wise unit modulus constraint is imposed by the phase shifters on the analog RF precoder matrix. The traditional methods have a problem of performance loss in spectral efficiency. In the processing time and iteration, high complexities result in optimization algorithms. In this paper, a novel low complexity algorithm proposes which maximizes the spectral efficiency and reduces the computational processing time. 


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