An Efficient Filter-Bank Multi-Carrier System for High-Speed Wireline Applications

IF 2.4 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Jeremy Cosson-Martin;Hossein Shakiba;Ali Sheikholeslami
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引用次数: 1

Abstract

This paper proposes an efficient multi-carrier system that combines filter-bank multi-carrier signalling, decision-directed channel estimation, and frequency-domain timing recovery to eliminate the overhead associated with cyclic prefix, large side-lobes, and pilot carriers. Furthermore, a technique is proposed to halve the required number of FFTs (IFFTs), reducing their complexity by 29% for a 32-point resolution; a method is proposed to correct tilt and stretch distortion; and a gain controller with adaptive loop coefficients is adopted to achieve the same stability but 65% higher tracking bandwidth regardless of the FFT size. The concept is validated at the system level, where impairments are applied, enabling an in-depth comparison to conventional discrete multi-tone signalling. Assuming a 32-point FFT, a $35dB$ channel, and an overlap factor of 3, results show 101% improvement in capacity, 100% improvement in power efficiency, and 101% improvement in area efficiency, and all while maintaining comparable latency. This work enables very low-resolution multi-carrier schemes, which were previously impractical due to the significant overhead.
用于高速有线应用的高效滤波器组多载波系统
本文提出了一种高效的多载波系统,该系统将滤波器组多载波信号、决策导向信道估计和频域定时恢复相结合,以消除与循环前缀、大旁瓣和导频载波相关的开销。此外,提出了一种技术,将所需的fft (ifft)数量减半,将其复杂性降低29%,达到32点分辨率;提出了一种校正倾斜和拉伸变形的方法;采用具有自适应环路系数的增益控制器,无论FFT大小如何,都能获得相同的稳定性,但跟踪带宽提高了65%。该概念在系统级进行了验证,其中应用了损伤,从而能够与传统的离散多音信号进行深入比较。假设32点FFT, $35dB$通道,重叠系数为3,结果显示容量提高了101%,功率效率提高了100%,面积效率提高了101%,同时保持了相当的延迟。这项工作实现了非常低分辨率的多载波方案,这在以前是不切实际的,因为开销很大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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