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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >Integrated Wideband Self-Interference Cancellation in the RF Domain for FDD and Full-Duplex Wireless
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Integrated Wideband Self-Interference Cancellation in the RF Domain for FDD and Full-Duplex Wireless

机译:用于FDD和全双工无线网络的RF域中的集成宽带自干扰消除

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摘要

A fully integrated technique for wideband cancellation of transmitter (TX) self-interference (SI) in the RF domain is proposed for multiband frequency-division duplexing (FDD) and full-duplex (FD) wireless applications. Integrated wideband SI cancellation (SIC) in the RF domain is accomplished through: 1) a bank of tunable, reconfigurable second-order high-Q RF bandpass filters in the canceller that emulate the antenna interface’s isolation (essentially frequency-domain equalization in the RF domain) and 2) a linear -path - filter implementation with embedded variable attenuation and phase shifting. A 0.8–1.4 GHz receiver (RX) with the proposed wideband SIC circuits is implemented in a 65 nm CMOS process. In measurement, cancellation bandwidth (BW) is achieved across frequency-selective antenna interfaces: 1) a custom-designed LTE-like 0.780/0.895 GHz duplexer with TX/RX isolation peak magnitude of 30 dB, peak group delay of 11 ns, and 7 dB magnitude variation across the TX band for FDD and 2) a 1.4 GHz antenna pair for FD wireless with TX/RX isolation peak magnitude of 32 dB, peak group delay of 9 ns, and 3 dB magnitude variation over 1.36–1.38 GHz. For FDD, SIC enhances the effective out-of-band (OOB) IIP3 and IIP2 to and , respectively (enhancements of 8–10 and 29 dB, respectively). For FD, SIC eliminates - X gain compression for as high as of peak in-band (IB) SI, and enhances effective IB IIP3 and IIP2 by 22 and 58 dB.
机译:针对多频带频分双工(FDD)和全双工(FD)无线应用,提出了一种用于RF域中发射机(TX)自干扰(SI)宽带抵消的完全集成技术。 RF域中的集成宽带SI消除(SIC)可通过以下步骤实现:1)抵消器中的一组可调谐,可重新配置的二阶高Q RF带通滤波器,可模拟天线接口的隔离度(基本上是RF中的频域均衡)域)和2)带有嵌入式可变衰减和相移的线性路径滤波器实现。带有建议的宽带SIC电路的0.8–1.4 GHz接收器(RX)是在65 nm CMOS工艺中实现的。在测量中,可通过选频天线接口实现抵消带宽(BW):1)定制设计的类似LTE的0.780 / 0.895 GHz双工器,TX / RX隔离峰值幅度为30dB,峰值群延迟为11ns,并且FDD的TX频带上的幅度变化为7 dB; 2)FD无线用1.4 GHz天线对,TX / RX隔离的峰值幅度为32 dB,峰值群延迟为9 ns,在1.36–1.38 GHz范围内幅度变化为3 dB。对于FDD,SIC分别将有效带外(OOB)IIP3和IIP2增强为和(增强分别为8-10和29 dB)。对于FD,SIC消除了-X增益压缩,最高达到带内峰值(IB)SI的程度,并将有效IB IIP3和IIP2提高了22和58dB。

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