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Comparison of Over-the-Air Efficiency Enhancement Techniques in Linear Phased Arrays

机译:线性相控阵中空口效率增强技术的比较

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摘要

This article reviews the recent advancements in the utilization of over-the-air combining techniques to enhance the efficiency of phased-array transmitters for signals with a high peak-to-average-power ratio. A methodological comparison between three spatial over-the-air combining techniques--Doherty, outphasing, and quadrature combining--is proposed, along with analysis of their spatial properties, such as a beamwidth angle for a given error vector magnitude (EVM) value, directivity, out-of-band emission, and sensitivity to amplitude and phase mismatches between the different streams. The analysis suggests that the Doherty technique has the widest spatial angle range with EVM under -30 dB and the lowest sensitivity to mismatches, while quadrature combining exhibits the lowest adjacent channel power ratio (ACPR). Also, the Doherty technique enables the largest efficiency enhancement and allows to trade off efficiency enhancement for out-of-band emission. The different methods were tested over-the-air at 28 GHz with a four-element integrated phased array fabricated in 65 nm to validate the analysis.
机译:本文综述了利用空口组合技术提高相控阵发射机对高峰均功率比信号效率的最新进展。提出了三种空间空中合流技术(Doherty、outphasing和正交合合)之间的方法比较,并分析了它们的空间特性,例如给定误差矢量幅度(EVM)值的波束宽度角、方向性、带外发射以及对不同流之间幅度和相位失配的敏感性。分析表明,Doherty技术具有最宽的空间角度范围,EVM低于-30 dB,对失配的敏感度最低,而正交组合表现出最低的邻道功率比(ACPR)。此外,Doherty技术可实现最大的效率提升,并允许在效率提升与带外发射之间进行权衡。使用65 nm制造的四元件集成相控阵在28 GHz下对不同方法进行了空中测试,以验证分析结果。

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