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Investigation into Impulsive Noise Techniques for a G.FAST System

机译:一种G.fast系统冲动噪声技术的研究

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This paper focuses on impulsive noise (IN) mitigation techniques for the fourth generation broadband (4GBB) access network technology, known as G.fast. G.fast has demonstrated data rates up to 1 Gbps over lengths of copper loop up to 250 meters. The copper wire channel is subject to IN and our aim is to study its effect on the G.fast broadband system by modeling a copper wire channel combined with Middleton Class A IN is usually mitigated using simple non-linear techniques such as clipping and blanking, but these become less effective when working with high order QAM constellation, such as those used in G.fast. Therefore, we propose the use of the iterative Zhidkov algorithm to mitigate impulsive noise, for several noise index values. Simulation results show that Zhidkov’s algorithm outperforms the blanking and clipping methods, achieving a significant performance gain, and demonstrating that it is very suitable for use in a G.fast system.
机译:本文重点介绍了第四代宽带(4GBB)接入网络技术的脉冲噪声(IN)缓解技术,称为G.fast。 G.Fast已经证明了高达250米的铜环长度高达1 Gbps的数据速率。铜线通道受到预防,我们的目的是通过使用剪切和消隐等简单的非线性技术建模,研究其对G.Fast宽带系统对G.Fast宽带系统的影响。但是,在处理高阶QAM星座时,这些变得效果较低,例如G.fast中使用的那些。因此,我们提出了使用迭代Zhidkov算法来减轻脉冲噪声,用于几个噪声指数值。仿真结果表明,Zhidkov的算法优于消隐和剪切方法,实现了显着的性能增益,并证明它非常适合于G.fast系统。

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