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A Full-Duplex Rake Receiver Using RF Code-Domain Signal Processing for
一种利用RF码域信号处理的全双工Rake接收机,可抑制发射自干扰并利用多径提高信噪比。
45-nm RFSOI CMOS, 1.6 mm², 45.8 mW/指
全双工Rake接收机多径伪噪声码自干扰抑制
▸利用PN码正交性在RF域抑制发射自干扰
▸通过多径传播和PN码正交性提高信噪比
▸共享LNA和基带部分以降低功耗
Abstract
This article presents a full-duplex (FD) rake receiver (RX) that uses the orthogonality properties of pseudo- noise (PN) codes to reject transmitter (TX) self-interference (SI) in the RF domain, allowing simultaneous transmit and receive (STAR) operation in the same frequency channel. The rake RX also exploits multipath propagation in wireless channels and PN code orthogonality to gather signals across multipath components to increase the sig nal-to-noise ratio (SNR) while avoiding the fading effects of multipath channels. The rake RX shares a low-noise amplifier (LNA) between the three rake fingers and a high-linearity baseband (BB) section with the second-order filtering to improve the rejection with low power consumption. Measurements indicate that TX SI rejection is 41.2 dB in the RF domain with 9-dB SNR improvement in a multipath channel. The rake RX is implemented in a 45-nm RFSOI CMOS process and occupies an active area of 1.6 mm 2 while consuming 45.8 mW per finger, including clock power consumption.