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An All-Passive Negative Feedback Network for Broadband and Wide Field-of-View Self-Steering Beam-Forming With Zero DC Power Consumption

机译:全被动负反馈网络,用于宽带和宽视野自导波束形成,零直流功耗

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This paper presents an all-passive negative feedback network that performs autonomous radio-frequency (RF) front-end beam-forming and dynamic beam-tracking toward the direction of the incident RF signal. The proposed feedback network consists of a passive RF signal processing network, voltage rectifiers, and voltage-controlled delay-line phased shifters, all of which are passive-only circuits. The negative feedback loop is realized by passive phase detection, phase-to-voltage conversion, and voltage-controlled phase shifting, achieving a large loop-gain and autonomous operation with zero DC power consumption. The nonlinear behavior of the loop is exploited to substantially expand the array field of view (FoV). A proof-of-concept broadband four-element all-passive self-steering beam-former at 5 GHz with a wide FoV is implemented in a standard 130 nm CMOS process. A high-quality four-element synthesized array factor is measured for the input progressive phase shift φin from -180° to 180°. When the proposed negative feedback loop is enabled, the normalized array factor is -2.87/-2.8 dB at φin = +90°/-90° with an input RF power Pin of -17 dBm/element at 5 GHz, achieving >25 dB array factor improvement over the open-loop operation. Moreover, the nonlinear feedback loop allows for significant array factor improvement even at φin = +180°/-180°. The proposed beam-former also achieves high-quality self-steering beamforming from 4 to 5.68 GHz with 34.7% fractional bandwidth. Therefore, the proof-of-concept all-passive self-steering beamformer outperforms the state-of-the-art active designs in terms of beam-forming quality, FoV, and fractional bandwidth. To the best of the authors' knowledge, this is the first demonstration of an all-passive negative feedback network for a broadband and wide FoV self-steering beam-forming with zero DC power consumption.
机译:本文提出了一种全被动式负反馈网络,该网络执行自主的射频(RF)前端波束形成和朝入射RF信号方向的动态波束跟踪。拟议的反馈网络由无源RF信号处理网络,电压整流器和压控延迟线相移器组成,所有这些电路均为无源电路。负反馈环路是通过无源相位检测,相电压转换和压控相移实现的,从而实现了大环路增益和零直流功耗的自主运行。利用环路的非线性行为来充分扩展阵列视场(FoV)。在标准的130 nm CMOS工艺中实现了具有宽FoV的5 GHz概念验证宽带四元件全无源自控波束形成器。对于从-180°到180°的输入渐进式相移φin,测量了高质量的四元素合成阵列因子。当启用建议的负反馈环路时,在φin= + 90°/ -90°时归一化的阵列系数为-2.87 / -2.8 dB,在5 GHz时输入RF功率引脚为-17 dBm /元素,实现> 25 dB通过开环操作改善阵列系数。此外,即使在φin= + 180°/ -180°时,非线性反馈环路也可以显着改善阵列系数。所提出的波束形成器还实现了从4到5.68 GHz的高质量自导向波束形成,其分数带宽为34.7%。因此,在波束形成质量,FoV和分数带宽方面,概念验证的全被动式自动转向波束形成器优于最新的有源设计。据作者所知,这是全被动负反馈网络的首次演示,该网络用于宽带和宽FoV自控波束形成,且直流功耗为零。

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