On the Performance of Quantized DMT Signals
Date
2015-10
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Advisor
Coadvisor
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Publisher
IEEE
Language
English
Alternative Title
Abstract
Discrete multitone (DMT) signals are known to have large dynamic range, which make them
prone to nonlinear effects such as the quantization effects inherent to the signal processing
at the transmission chain. However, the analysis of these effects is difficult due to the
noncontinuous nature of quantization characteristics. In this paper we present a simple and
accurate analytical method for the performance evaluation of quantization effects on DMT
signals. For this purpose, we take advantage of the Gaussian-like nature of DMT signals with
a large number of subcarriers and define a smooth polynomial nonlinear characteristic that
gives rise to signals with spectral characterization that is similar to quantization signals. This
equivalent nonlinearity is then employed for obtaining the performance of quantized DMT
signals when conventional receivers, ideal Bussgang receivers and optimal receivers are
employed.
Keywords
DMT
Document Type
conferenceObject
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Open Access