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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A 25-GHz Compact Low-Power Phased-Array Receiver With Continuous Beam Steering in CMOS Technology
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A 25-GHz Compact Low-Power Phased-Array Receiver With Continuous Beam Steering in CMOS Technology

机译:采用CMOS技术的连续波束控制的25 GHz紧凑型低功耗相控阵接收器

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摘要

A compact low-power phased array receiver with continuous beam steering is presented based on the subsector beam steering technique. The entire beam steering range is divided into five subsectors from four characteristic beams of the Butler matrix. In each subsector the receive beam is steered by weighted combination of the received signals from array antennas. The theory of beam steering is detailed and the relationship of the steered angle with the beam steering factors is derived. The proposed architecture has lower circuit complexity and less power consumption because no challenging CMOS 360 $^{circ}$ variable phase shifters and multi-phase voltage-controlled oscillators are required . The phased array MMIC implemented in 0.13 $mu{hbox {m}}$ CMOS technology has 17–21 dB receiving gain and 8.9–10.7$~$ dB noise figure in 25–26$~$GHz. It consumes lower than 30 mW and takes a small chip area of 1.43 ${hbox {mm}}^{2}$. The continuous beam steering is demonstrated over the spatial range from $- hbox{90}^{circ}$ to $+ hbox{90}^{circ}$.
机译:基于子扇区波束控制技术,提出了一种具有连续波束控制的紧凑型低功率相控阵接收机。整个光束控制范围从巴特勒矩阵的四个特征光束分为五个子扇区。在每个子扇区中,接收波束由来自阵列天线的接收信号的加权组合控制。详细介绍了光束转向的原理,推导了转向角与光束转向因子的关系。所提出的架构具有较低的电路复杂度和较低的功耗,因为不需要具有挑战性的CMOS 360可变移相器和多相压控振荡器。在0.13 $ mu {hbox {m}} $ CMOS技术中实现的相控阵MMIC在25–26 $〜$ GHz中具有17–21 dB的接收增益和8.9–10.7 $〜$ dB的噪声系数。它的功耗低于30 mW,占用的芯片面积仅为1.43 $ {hbox {mm}} ^ {2} $。在从$ -hbox {90} ^ {circ} $到$ + hbox {90} ^ {circ} $的空间范围内证明了连续光束转向。

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