DocumentCode
1548806
Title
Analysis of different optimization criteria for IF predistortion in digital radio links with nonlinear amplifiers
Author
Bernardini, Angelo ; Fina, Silvia De
Author_Institution
Dipt. INFOCOM, Rome Univ., Italy
Volume
45
Issue
4
fYear
1997
fDate
4/1/1997 12:00:00 AM
Firstpage
421
Lastpage
428
Abstract
A compensation technique for nonlinearities is usually necessary in QAM digital satellite links. Analog waveform compensation has the advantage of reducing out-of-band spectral emissions with respect to end-to-end digital predistortion, in addition to its easy realization. Nevertheless, it has been often neglected in the literature because of its lack of adaptivity; we propose making the predistorter fully adaptive. Different control schemes applied to fifth-order IF predistortion with different optimization criteria have been investigated. A simulation-based analysis shows that adaptive IF compensation achieves excellent performance if compared with static predistortion of the same order. Comparisons with upper bounds related to digital predistortion with memory, moreover, denote that IF analog predistortion can be truly considered an alternative approach, especially for narrow pulse shaping
Keywords
adaptive signal processing; digital radio; microwave amplifiers; microwave links; power amplifiers; quadrature amplitude modulation; satellite links; IF analog predistortion; QAM digital satellite links; adaptive IF compensation; adaptive predistorter; compensation technique; control schemes; digital predistortion; digital radio links; fifth-order IF predistortion; memory; microwave radio systems; narrow pulse shaping; nonlinear amplifiers; nonlinearities; optimization criteria; out of band spectral emissions reduction; performance; simulation based analysis; static predistortion; upper bounds; waveform compensation; Analytical models; Digital communication; Microwave theory and techniques; Performance analysis; Power harmonic filters; Predistortion; Pulse shaping methods; Quadrature amplitude modulation; Satellite broadcasting; Upper bound;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/26.585917
Filename
585917
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