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Journal ArticleDOI

Behavioral modeling and predistortion

Fadhel M. Ghannouchi, +1 more
- 17 Nov 2009 - 
- Vol. 10, Iss: 7, pp 52-64
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TLDR
A software digital predistortion solution that enables closed-loop wideband linearization was briefly presented with excellent linearization capabilities when amplifying a 12-carrier 60-MHZ wide WCDMA signal.
Abstract
In this article, a thorough overview of behavioral modeling and predistortion of dynamic nonlinearities in RF PAs and transmitters was presented. The sensitivity of the DUT behavior to the characteristics of the stimulus was reviewed to ensure appropriate conditions for accurate observation. Nearly all state-of-the-art behavioral models were described and their relative performance and complexity discussed. Similarities and specifics of behavioral modeling and digital predistortion were presented. Thereby, digital predistortion can be seen as a behavioral modeling problem for which performance assessment is much more straightforward. For DUT behavioral modeling, there is no comprehensive metric that allows the model performance evaluation while taking into account the model accuracy in predicting all the three components of the DUT behavior (in-band distortion, static nonlinearity and memory effects). Finally, a software digital predistortion solution that enables closed-loop wideband linearization was briefly presented with excellent linearization capabilities when amplifying a 12-carrier 60-MHZ wide WCDMA signal.

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Identification of block-oriented nonlinear systems starting from linear approximations: A survey

TL;DR: An overview of the different block-oriented nonlinear models that can be identified using linear approximations, and of the identification algorithms that have been developed in the past are given.
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Codesign of PA, Supply, and Signal Processing for Linear Supply-Modulated RF Transmitters

TL;DR: In this article, a method for achieving high-efficiency linear transmitters by codesign of the RF power amplifier (PA), dynamic supply, and signal processing is presented, which achieves 52.5% composite power-added efficiency with high linearity for a W-CDMA signal with a 23MHz supply modulator bandwidth.
References
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Journal ArticleDOI

A Generalized Memory Polynomial Model for Digital Predistortion of RF Power Amplifiers

TL;DR: This paper relates the general Volterra representation to the classical Wiener, Hammerstein, Wiener-Hammerstein, and parallel Wiener structures, and describes some state-of-the-art predistortion models based on memory polynomials, and proposes a new generalizedMemory polynomial that achieves the best performance to date.
Journal ArticleDOI

A robust digital baseband predistorter constructed using memory polynomials

TL;DR: A memory polynomial model for the predistorter is proposed and implemented using an indirect learning architecture and linearization performance is demonstrated on a three-carrier WCDMA signal.
Journal ArticleDOI

Digital predistortion of wideband signals based on power amplifier model with memory

TL;DR: In this paper, memory effects in the power amplifier limit the performance of digital predistortion for wideband signals, and novel algorithms that take into account such effects are proposed to solve the problem.
Journal ArticleDOI

A new Volterra predistorter based on the indirect learning architecture

TL;DR: This work presents a new Volterra-based predistorter, which utilizes the indirect learning architecture to circumvent a classical problem associated with predistorters, namely that the desired output is not known in advance.
Journal ArticleDOI

Amplifier linearization using a digital predistorter with fast adaptation and low memory requirements

TL;DR: A method is described for linearizing a power amplifier by predistorting its input, particularly well suited to baseband implementation with digital signal processor hardware and its ability to suppress intermodulation products using only a small table is demonstrated.
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