Improving Energy Efficiency In Massive Mimo: Joint Digital Beam-Steering And Tone-Reservation Papr Reduction

IET COMMUNICATIONS(2020)

引用 5|浏览16
暂无评分
摘要
In this study, the authors propose a novel architecture based on the combination of peak-to-average power ratio (PAPR) reduction with digital beamforming (BF) for mm-wave massive multiple-input multiple-output (MIMO) systems. In order to keep the power amplifiers (PAs) working at the same input back-off thus maximising the system power efficiency, they propose to perform time-domain transmit beam-steering by adding progressive time delays to the signals at each antenna element, while keeping the amplitude weights unitary. They show that these time delays can be obtained with a finite impulse response filter implementation of time-domain fractional delay filter structures such as Lagrange interpolation polynomials. They also introduce an analysis on the PAPR of the interpolated signals, where they derive an upper bound to it and show that its value is similar to that of the signal at the input of the interpolation filters, showing the feasibility of the proposed method. In addition, they present a detailed analysis where they show that a significant reduction in computational complexity is obtained when compared to frequency-domain BF. Simulation results validate that the novel proposed scheme combining PAPR reduction and digital BF offers high-precision beam-steering maintaining reduced PAPR in the delayed signals fed to the antennas.
更多
查看译文
关键词
polynomials, interpolation, array signal processing, FIR filters, OFDM modulation, MIMO communication, delay filters, computational complexity, millimetre wave power amplifiers, millimetre wave communication, millimetre wave antenna arrays, energy efficiency, massive MIMO, joint digital beam-steering, peak-to-average power ratio reduction, digital beamforming, mm-wave massive multiple-input multiple-output systems, power amplifiers, system power efficiency, time-domain transmit beam-steering, progressive time delays, amplitude weights, finite impulse response filter implementation, time-domain fractional delay filter structures, Lagrange interpolation polynomials, interpolated signals, interpolation filters, frequency-domain BF, PAPR reduction, digital BF, high-precision beam-steering, delayed signals, tone-reservation PAPR reduction
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要