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Improper Gaussian signaling in full-duplex relay channels with residual self-interference

机译:具有残余自干扰的全双工中继信道中的高斯信令不正确

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摘要

We study the potential employment of improper Gaussian signaling (IGS) in full-duplex cooperative settings with residual self-interference (RSI). IGS is recently shown to outperform traditional proper Gaussian signaling (PGS) in several interference-limited channel settings. In this work, IGS is employed in an attempt to alleviate the RSI adverse effect in full-duplex relaying (FDR). To this end, we derive a tight upper bound expression for the end-to-end outage probability in terms of the relay signal parameters represented in its power and circularity coefficient. We further show that the derived upper bound is either monotonic or unimodal in the relay's circularity coefficient. This result allows for easily locating the global optimal point using known numerical methods. Based on the analysis, IGS allows FDR systems to operate even with high RSI. It is shown that, while the communication totally fails with PGS as the RSI increases, the IGS outage probability approaches a fixed value that depends on the channel statistics and target rate. The obtained results show that IGS can leverage higher relay power budgets than PGS to improve the performance, meanwhile it relieves its RSI impact via tuning the signal impropriety. © 2016 IEEE.
机译:我们研究了在具有残余自我干扰(RSI)的全双工合作环境中使用不正确的高斯信号(IGS)的潜在方法。最近显示,在几种受干扰限制的信道设置中,IGS的性能要优于传统的适当高斯信号(PGS)。在这项工作中,使用IGS来尝试减轻全双工中继(FDR)中的RSI不利影响。为此,我们根据以其功率和圆度系数表示的中继信号参数,得出了端到端中断概率的严格上限表达式。我们进一步表明,在继电器的圆度系数中,导出的上限是单调的还是单峰的。该结果允许使用已知的数值方法容易地定位全局最优点。根据分析,IGS允许FDR系统即使在较高RSI的情况下也可以运行。结果表明,随着RSI的增加,PGS通信完全失败,而IGS中断概率接近固定值,该值取决于信道统计信息和目标速率。获得的结果表明,IGS可以利用比PGS更高的继电器功率预算来改善性能,同时通过调整信号不当来减轻其RSI影响。 ©2016 IEEE。

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