Blockwise Phase Rotation-Aided Analog Transmit Beamforming for 5G mmWave Systems

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초록

In this letter, we propose a blockwise phase rotation-aided analog transmit beamforming (BPR-ATB) scheme to improve the spectral efficiency and the bit-error-rate (BER) performance in millimeter wave (mmWave) communication systems. Due to the phase angle optimization issues of the conventional analog beamforming, we design the BPR-ATB for reducing the rotated beamspace of the equivalent channel and improving the minimum Euclidean distance. To verify the effectiveness of the proposed BPR-ATB scheme, we employ an Alamouti coding technique at the transmitter and evaluate the bit-error-rate performance for mmWave multiple-input and single-output systems. The simulation results show that the proposed BPR-ATB scheme outperforms the conventional discrete Fourier transform-based ATB scheme.

키워드

5G-millimeter-wave systemsAlamouti codingArray signal processingBER performance.blockwise phase rotationEuclidean distanceMillimeter wave communicationOptimizationOptimized production technologyReceiving antennasspectralTransmitting antennasBeamformingDiscrete Fourier transformsMillimeter wavesAnalog beamformingBit error rate (BER) performanceEquivalent channelsMillimeter waves (mmwave)Minimum euclidean distancesSingle-output systemsSpectral efficienciesTransmit beamformingBit error rate
제목
Blockwise Phase Rotation-Aided Analog Transmit Beamforming for 5G mmWave Systems
저자
Sarker, Md Abdul LatifOrikumhi, IgbafeHan, Dong SeogKim, Sunwoo
DOI
10.1109/LWC.2021.3100614
발행일
2021-11
유형
Article in Press
저널명
IEEE Wireless Communications Letters
10
11
페이지
2365 ~ 2368