啁啾-z变换在DMT调制解调器分数阶插值中的应用

F. Pisoni
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引用次数: 0

摘要

多载波系统中的采样时钟同步,例如离散多音(DMT)数字用户线路调制解调器,可以用锁相环完成。这需要昂贵的压控振荡器(VCO)。或者,时钟偏移补偿可以完全在数字域中完成,用更便宜的自由运行振荡器取代VCO。该解决方案要求在数字域中对感兴趣的信号进行分数插值。在DMT中,数字插值器可以与调制DFT组合成一个单一的分数算子:chirp-z变换。在本文中,我们探索了基于Chirp-z变换的插值算法,并针对DMT调制解调器的时钟偏移恢复进行了定制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of the chirp-z transform to fractional interpolation in DMT modems
Sampling clock synchronization in multi carrier systems, such as discrete multitone (DMT) digital subscriber line modems, can be done with a phase locked loop. This requires expensive voltage-controlled oscillators (VCO). Alternatively, clock-offset compensation can be done completely in the digital domain, replacing the VCO with a cheaper free-running oscillator. This solution requires the signal of interest to be fractionally interpolated in the digital domain. In DMT, the digital interpolator can be combined with the modulating DFT into one single fractional operator: the chirp-z transform. In this paper, we explore interpolation algorithms based on the Chirp-z transform and tailor them at clock-offset recovery for DMT modems.
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