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Finite Word Length Effects on Transmission Rate in Zero Forcing Linear Precoding for Multichannel DSL

机译:多通道DSL零强制线性预编码中有限字长对传输速率的影响

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摘要

Crosstalk interference is the limiting factor in transmission over copper lines. Crosstalk cancellation techniques show great potential for enabling the next leap in DSL transmission rates. An important issue when implementing crosstalk cancelation techniques in hardware is the effect of finite word length on performance. In this paper, we provide an analysis of the performance of linear zero-forcing precoders, used for crosstalk compensation, in the presence of finite word length errors. We quantify analytically the tradeoff between precoder word length and transmission rate degradation. More specifically, we prove a simple formula for the transmission-rate loss as a function of the number of bits used for precoding, the signal-to-noise ratio, and the standard line parameters. We demonstrate, through simulations on real lines, the accuracy of our estimates. Moreover, our results are stable in the presence of channel estimation errors. Lastly, we show how to use these estimates as a design tool for DSL linear crosstalk precoders. For example, we show that for standard VDSL2 precoded systems, 14 bit representation of the precoder entries results in capacity loss below 1percent for lines over 300 m.
机译:串扰干扰是铜线传输的限制因素。串扰消除技术显示出实现DSL传输速率下一次飞跃的巨大潜力。在硬件中实现串扰消除技术时,一个重要问题是有限字长对性能的影响。在本文中,我们分析了线性零强制预编码器在存在有限字长误差的情况下的性能,该预编码器用于串扰补偿。我们分析性地量化了预编码器字长和传输速率衰减之间的权衡。更具体地说,我们证明了传输速率损耗的简单公式,该公式是用于预编码的位数、信噪比和标准线路参数的函数。我们通过对真实线路的模拟来证明我们估计的准确性。此外,我们的结果在存在信道估计误差的情况下是稳定的。最后,我们将展示如何使用这些估计值作为DSL线性串扰预编码器的设计工具。例如,我们表明,对于标准 VDSL2 预编码系统,预编码器条目的 14 位表示会导致超过 300 m 的线路的容量损失低于 1%。

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