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首页> 外文期刊>IEEE Transactions on Communications >Improper Gaussian Signaling for Hardware Impaired Multihop Full-Duplex Relaying Systems
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Improper Gaussian Signaling for Hardware Impaired Multihop Full-Duplex Relaying Systems

机译:硬件受损的多跳全双工中继系统的高斯信号不正确

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摘要

In this paper, we analyze the performance degradation of a multi-hop decode-and-forward full-duplex relaying system caused by the residual self-interference (RSI) and hardware distortions (HWD) imposed by the FDR operation and imperfect hardware, respectively. In addition, we study the benefits of employing improper Gaussian signaling (IGS) in the MH-FDR system. Different from the traditional symmetric signaling scheme, i.e., proper Gaussian signaling (PGS), IGS has non-zero pseudo-variance that can limit the impact of RSI and HWD in the MH-FDR system. To evaluate the system performance gain using IGS, first we express the end-to-end achievable rate of the MH system as the minimum rate supported by all participating links. Then, we optimize the pseudo-variance of all participating transmitters, including source and relays to compensate the interference impact and improve the end-to-end achievable rate. We propose two network optimization schemes based on the system characteristics, i.e., joint optimization framework and distributed optimization scenario. Interestingly, IGS-based scheme outperforms its counterpart PGS-based scheme, especially at higher interference-to-noise ratio. Our findings reveal that using IGS in single-user detection systems that suffer from both RSI and HWD can effectively mitigate the degradation in the achievable rate performance.
机译:在本文中,我们分析了分别由FDR操作和不完善的硬件引起的残留自干扰(RSI)和硬件失真(HWD)导致的多跳解码转发全双工中继系统的性能下降。 。此外,我们研究了在MH-FDR系统中采用不正确的高斯信号(IGS)的好处。 IGS与传统的对称信令方案即适当的高斯信令(PGS)不同,它具有非零伪方差,可以限制RSI和HWD在MH-FDR系统中的影响。为了评估使用IGS的系统性能增益,首先我们将MH系统的端到端可达到的速率表示为所有参与链接所支持的最小速率。然后,我们优化所有参与发射机的伪方差,包括源和中继,以补偿干扰影响并提高端到端可达到的速率。我们根据系统特点提出了两种网络优化方案,即联合优化框架和分布式优化方案。有趣的是,基于IGS的方案优于基于PGS的方案,尤其是在较高的干扰噪声比下。我们的发现表明,在遭受RSI和HWD困扰的单用户检测系统中使用IGS可以有效减轻可达到的速率性能下降。

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