Multi-tap Digital Canceller for Full-Duplex Applications

2017 IEEE 18TH INTERNATIONAL WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS (SPAWC)(2017)

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摘要
We identify phase noise as a bottleneck for the performance of digital self-interference cancellers that utilize a single auxiliary receiver---single-tap digital cancellers---and operate in multipath propagation environments. Our analysis demonstrates that the degradation due to phase noise is caused by a mismatch between the analog delay of the auxiliary receiver and the different delays of the multipath components of the self-interference signal. We propose a novel multi-tap digital self-interference canceller architecture that is based on multiple auxiliary receivers and a customized Normalized-Least-Mean-Squared (NLMS) filtering for self-interference regeneration. Our simulation results demonstrate that our proposed architecture is more robust to phase noise impairments and can in some cases achieve 10~dB larger self-interference cancellation than the single-tap architecture.
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关键词
phase noise impairments,customized normalized-least-mean-squared filtering,multitap digital self-interference canceller architecture,self-interference cancellation,analog delay,multipath propagation environments,single-tap digital cancellers,single auxiliary receiver,full-duplex applications,single-tap architecture,self-interference regeneration,multiple auxiliary receivers,self-interference signal,multipath components
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