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A 5GHz all-passive negative feedback network for RF front-end self-steering beam-forming with zero DC power consumption

机译:用于射频前端自控波束形成的5GHz全无源负反馈网络,零直流功耗

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This paper presents an all-passive negative feedback network to perform autonomous RF front-end beam-forming towards the direction of the incident RF beam. The beam-forming front-end block consists of a passive network for RF signal processing, voltage rectifiers, and voltage-controlled phase shifters, all of which are passive components and consume zero DC power. A proof-of-concept 4-element self-steering beam-forming block at 5GHz is implemented in a standard 130nm CMOS process and occupies an area of 4.1mm2. The measurements demonstrate that a high-quality 4-element array factor is successfully synthesized for the input progressive phase shift from ¿¿¿120¿¿ to +120¿¿. At an input power Pin of ¿¿¿17dBm/element, the normalized array factor is ¿¿¿4.3dB/¿¿¿3.2dB at +90¿¿/¿¿¿90¿¿ input progressive phase shift in the closed-loop operation, out-performing reported active self-steering beam-formers. To the best of our knowledge, this is the first demonstration of an all-passive network for front-end self-steering beam-forming with zero DC power.
机译:本文提出了一种全无源负反馈网络,用于朝着入射RF波束的方向执行自主的RF前端波束形成。波束形成前端模块包括一个用于射频信号处理的无源网络,电压整流器和压控移相器,所有这些都是无源组件,消耗零直流功率。 5 GHz的概念验证4元素自控波束形成模块以标准的130nm CMOS工艺实现,占地4.1mm2。测量结果表明,成功地合成了高质量的4元素数组因子,用于输入从?120到+120¿的逐行相移。在输入功率Pin为?? 17dBm / element时,闭环输入+90¿/?¿¿¿¿¿¿操作方面,表现优于主动自转向波束形成器。据我们所知,这是用于零直流功率前端自转向波束形成的全无源网络的首次演示。

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