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Self-interference cancellation via beamforming in an integrated full duplex circulator-receiver phased array

机译:通过集成全双工循环 - 接收器相控阵列中的波束成形通过波束成形进行自干扰消除

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This paper describes how phased array beamforming can be exploited to achieve wideband self-interference cancellation (SIC). This SIC is gained with no additional power consumption while minimizing link budget (transmitter (TX) and receiver (RX) array gain) penalty by repurposing spatial degrees of freedom. Unlike prior works that rely only on digital transmit beamforming, this work takes advantage of analog/RF beamforming capability that can be easily embedded within an integrated circulator-receiver array. This enables (i) obtaining SIC through beamforming on both TX and RX sides, thus increasing the number of degrees of freedom (DoF) that can be used to obtain SIC and form the desired beams, while (ii) sharing the antenna array between TX and RX. A 750MHz 65nm CMOS scalable 4-element full-duplex circulator-receiver array is demonstrated in conjunction with a TX phased array implemented using discrete components. A tiled 8-element system shows (i) 50dB overall RF array SIC over 16.25MHz (WiFi-like) bandwidth (BW) with <; 3.5/3dB degradation in TX and RX array gains, respectively, and (ii) 100dB overall array SIC including digital SIC, supporting +16.5dBm TX array power handling.
机译:本文介绍了如何利用分阶段阵列波束成形以实现宽带自干扰取消(SIC)。通过重新修复空间自由度最小化链路预算(发射机(TX)和接收器(RX)阵列增益)惩罚,该SIC没有额外的功耗。与依赖于数字传输波束成形的先前作品不同,该工作利用了模拟/射频波束成形能力,该功能可以容易地嵌入在集成的循环器 - 接收器阵列中。这使得(i)能够通过TX和Rx侧面上的波束成形获得SIC,从而增加了可用于获得SIC并形成所需光束的自由度(DOF)的数量,而(ii)在TX之间共享天线阵列和rx。可以使用使用离散组件实现的TX相控阵列来演示750MHz 65nm CMOS可伸缩的4元件全双工循环器 - 接收器阵列。平铺的8元系统显示(i)50dB总体RF阵列SiC超过16.25MHz(类似WiFi)带宽(BW),带宽<; 3.5 / 3DB在TX和RX阵列中降低,分别为(ii)100dB整体阵列SIC,包括数字SIC,支持+ 16.5dBm TX阵列电源处理。

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