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Digitally Controlled Analog Wideband Interference Cancellation for In-Device Spectrum Sharing and Aggregation

机译:用于设备内频谱共享和聚合的数控模拟宽带干扰消除

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摘要

In this paper, we present a feasibility of wideband analog self-interference cancellation with a newly proposed digitally controlled analog adaptive filter. We analyze the key existing issues and concerns in analog interference cancellation and propose novel solutions to cancel the self-interference with a simple 1-tap cancellation circuit. The proposed solution conducts a blind estimation of optimal analog filter coefficients in the digital domain without requiring a pilot signal. We present an end-to-end system analysis and 1-tap adaptive filter circuit analysis to show the feasibility of wideband cancellation. We then propose a few novel blind coefficient estimation algorithms and show their cancellation performance by both simulations and measurements from an actual prototype. The results suggest that our self-interference approach enables the simultaneous operation of the licensed and unlicensed technologies in the adjacent spectrum within a single device, which, in turn, facilitates graceful spectrum sharing and bandwidth aggregation between the licensed and unlicensed technologies.
机译:在本文中,我们提出了使用新提出的数控模拟自适应滤波器进行宽带模拟自干扰消除的可行性。我们分析了模拟干扰消除中存在的关键问题,并提出了一种新颖的解决方案,可通过简单的1抽头消除电路消除自干扰。所提出的解决方案在不需要导频信号的情况下进行了数字域中最佳模拟滤波器系数的盲估计。我们提出了端到端的系统分析和一抽头自适应滤波器电路分析,以显示宽带抵消的可行性。然后,我们提出了一些新颖的盲系数估计算法,并通过仿真和来自实际原型的测量来显示其抵消性能。结果表明,我们的自干扰方法可以在单个设备内的相邻频谱中同时运行许可和非许可技术,从而有利于许可和非许可技术之间的优美频谱共享和带宽聚合。

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