Linearization of mm-Wave Large-Scale Phased Arrays Using Near-Field Coupling Feedback for >10Gb/s Wireless Communication

Rosanah Murugesu, M. Holyoak, H. Chow, S. Shahramian
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引用次数: 4

Abstract

This paper proposes a digital predistortion (DPD) technique for power amplifiers (PAs) in a large-scale multi-tile millimeter-wave (mm-wave) TX/RX phased-array system. By utilizing the nearfield coupling feedback between TX and RX elements for observation, the proposed DPD can linearize the main beam of a transmitted signal over the range of possible steering angles without the need for any additional dedicated far-field DPD observation circuitry or hardware. The proposed DPD is evaluated by linearizing a 256-TX and 128-RX element array driven by a 2.5-GBaud 16/64-QAM signal centered at 90 GHz. A single set of DPD coefficients achieve up to 8.8-dB improvement in Noise Power Ratio (NPR) as well as up to 5.6-dB improvement in Adjacent Channel Power Ratio (ACPR) across the 120° azimuth and 100° elevation steering range of the antenna array. Wireless links also demonstrate EVM improvements of up to 5.1 dB at 10 Gb/s.
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基于近场耦合反馈的毫米波大规模相控阵线性化>10Gb/s无线通信
提出了一种用于大规模毫米波(mm-wave) TX/RX相控阵系统中功率放大器的数字预失真(DPD)技术。通过利用TX和RX元件之间的近场耦合反馈进行观测,所提出的DPD可以在可能的转向角度范围内线性化传输信号的主波束,而无需任何额外的专用远场DPD观测电路或硬件。通过线性化由2.5 gbaud 16/64-QAM信号驱动的256-TX和128-RX元件阵列来评估所提出的DPD。在天线阵列的120°方位角和100°仰角转向范围内,单组DPD系数可使噪声功率比(NPR)提高8.8 db,相邻信道功率比(ACPR)提高5.6 db。无线链路在10gb /s速度下EVM的改进也高达5.1 dB。
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