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Compressed impairment sensing-assisted and interleaved-double-FFT-aided modulationimproves broadband power line communications subjected to asynchronous impulsive noise

机译:压缩损伤传感辅助和交错双FFT辅助调制改善了受异步脉冲噪声影响的宽带电力线通信

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摘要

In power line communications (PLCs), the multipath-induced dispersion and the impulsive noise are the two fundamental impediments in the way of high-integrity communications. The conventional orthogonal frequency-division multiplexing (OFDM) system is capable of mitigating the multipath effects in PLCs, but it fails to suppress the impulsive noise effects. Therefore, in order to mitigate both the multipath effects and the impulsive effects in PLCs, in this paper, a compressed impairment sensing (CIS)-assisted and interleaved-double-FFT (IDFFT) aided system is proposed for indoor broadband PLC. Similarly to classic OFDM, data symbols are transmitted in the time-domain, while the equalization process is employed in the frequency-domain in order to achieve the maximum attainable multipath diversity gain. Additionally, a specifically designed interleaver is employed in the frequency-domain in order to mitigate the impulsive noise effects, which relies on the principles of compressive sensing (CS). Specifically, by taking advantage of the interleaving process, the impairment impulsive samples can be estimated by exploiting the principle of CS and then cancelled. In order to improve the estimation performance of CS, we propose a beneficial pilot design complemented by a pilot insertion scheme. Finally, a CIS-assisted detector is proposed for the IDFFT system advocated. Our simulation results show that the proposed CIS-assisted IDFFT system is capable of achieving a significantly improved performance compared to conventional OFDM. Furthermore, the tradeoffs to be struck in the design of the CIS-assisted IDFFT system are also studied.
机译:在电力线通信(PLC)中,多径引起的色散和脉冲噪声是高完整性通信方式中的两个基本障碍。传统的正交频分多路复用(OFDM)系统能够减轻PLC中的多径效应,但无法抑制脉冲噪声效应。因此,为了减轻PLC中的多径效应和脉冲效应,本文提出了一种针对室内宽带PLC的压缩损伤感知(CIS)辅助和交错双FFT(IDFFT)辅助系统。与经典OFDM相似,数据符号在时域中传输,而均衡过程在频域中使用,以实现最大可获得的多径分集增益。另外,在频域中采用了专门设计的交织器以减轻脉冲噪声的影响,这依赖于压缩感测(CS)的原理。具体地,通过利用交织过程,可以利用CS的原理来估计减损冲动样本,然后将其消除。为了提高CS的估计性能,我们提出了有益的导频设计,并辅之以导频插入方案。最后,针对所提倡的IDFFT系统,提出了CIS辅助检测器。我们的仿真结果表明,与传统OFDM相比,所提出的CIS辅助IDFFT系统能够显着提高性能。此外,还研究了在CIS辅助IDFFT系统设计中要权衡的问题。

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