基于光 FBMC Burst 中多瓣均衡的增强型信号传输性能

Mohammed S. Bahaaelden, Beatriz Ortega, Rafael Perez-Jimenez, V. Almenar
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引用次数: 0

摘要

由于主要的固有假想干扰(IMI)的影响,在可见光通信(VLC)系统中首次提出了带有翻转滤波器组多载波(Flip-FBMC)猝发的三抽头均衡器,以克服单抽头均衡器估计性能下降的问题。在高延迟信道情况下,与翻转-OFDM 系统相比,在符号错误率(SER)为 10^{-3}$ 时,拟议系统的信噪比(SNR)增益为 0.7 dB,而在符号错误率(SER)为 $=10^{-4}$ 的高信噪比区域,则会出现相同的错误。此外,还可以通过尾部缩短机制优化其性能,与 Flip-CP-OFDM 系统的吞吐量相比,其频谱效率大约提高了 11%。此外,理论分析表明,与 DCO-FBMC 格式相比,一阶邻域外的诱导 IMI(无法用 IAM 控制)对估计精度的影响微乎其微,而 DCO-FBMC 格式的估计水平则显著降低。
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Enhanced Signal Transmission Performance based on Multitap Equalization in Optical FBMC Burst
Due to the impact of predominant inherent imaginary interference (IMI), for the first time in visible light communication (VLC) systems, 3-taps equalizer with flip-filter bank multicarrier (Flip-FBMC) burst is proposed to overcome the degradation performance along with 1-tap equalizer estimation. Over high delays channel profile, the proposed system offers 0.7 dB signal to noise ratio (SNR) gain at $10^{-3}$ of the symbol error rate (SER), while an identical error is obtained at high SNR region corresponding to SER $=10^{-4}$, compared to Flip-OFDM system. Moreover, the possibility to optimize its performance is developed through a tail-shortening mechanism, where $\approx$ 11% increment in its spectral efficiency is obtained when compared to the throughput obtained by Flip-CP-OFDM system. Besides, the theoretical analysis reveals that the induced IMI outside the first order neighbor zone, which cannot be controlled using IAM, has a negligible impact on the estimation accuracy, compared to DCO-FBMC format, where a significant reduction in estimating level is captured.
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