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Analog Least Mean Square Loop for Self-Interference Cancellation in Generalized Continuous Wave SAR

机译:广义连续波SAR中自干扰消除的模拟最小均方环

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Generalized continuous wave synthetic aperture radar (GCW-SAR) is a promising new imaging radar system since it applies the full-duplex (FD) transmission technique to achieve continuous signaling in order to overcome several fundamental limitations of the conventional pulsed SARs. As in any FD wireless communication system, self-interference (SI) is also a key problem which can impact on the GCW-SAR system. In this paper, the analog least mean square (ALMS) loop in the radio frequency domain is adopted to cancel the SI for a GCW-SAR system with periodic chirp signaling. The average residual SI power after the ALMS loop is analyzed theoretically by a stationary analysis. It is found that the ALMS loop not only works with random signals in general FD communication systems, but also works well with the periodic signal in GCW-SAR systems. Simulation results show that over 45 dB SI cancellation can be achieved by the ALMS loop which ensures the proper operation of the GCW-SAR system.
机译:广义连续波合成孔径雷达(GCW-SAR)是一个有前途的新的成像雷达系统,因为它应用全双工(FD)传输技术来实现连续信令,以克服传统脉冲SAR的几个基本局限性。与任何FD无线通信系统一样,自干扰(SI)也是可能影响GCW-SAR系统的关键问题。在本文中,采用射频域中的模拟最低均方(ALMS)环路来取消具有周期性啁啾信令的GCW-SAR系统的SI。通过静止分析理论上分析了施工过程之后的平均残余Si功率。结果发现,ALMS循环不仅适用于通用FD通信系统中的随机信号,而且还适用于GCW-SAR系统中的周期性信号。仿真结果表明,通过ALMS环路可以实现超过45dB的SI取消,这确保了GCW-SAR系统的正常操作。

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