DocumentCode :
920821
Title :
Fast adaptive polynomial I and Q predistorter with global optimisation
Author :
Ghaderi, M. ; Kumar, S. ; Dodds, D.E.
Volume :
143
Issue :
2
fYear :
1996
fDate :
4/1/1996 12:00:00 AM
Firstpage :
78
Abstract :
High spectral efficiency modulation methods such as quadrature amplitude modulation are of considerable interest for future mobile communication systems. These methods are highly sensitive to transmitter power amplifier nonlinearities. The linearity of a power amplifier can be improved by using an adaptive nonlinear predistorter. A modified version of a previously reported polynomial lineariser is presented which has a faster rate of convergence by an order of magnitude. Faster convergence is achieved using postdistorter polynomial functions of two variables. The price is a 30% higher computation load for a predistorter having six coefficients. It is shown analytically that the gain and phase errors in the output demodulator used for adaptation of the predistorter simply result in a phase offset equal to the phase error. Adaptability of the proposed lineariser with changes in the power amplifier, predistorter quadrature modulator and the output demodulator are tested. The results show that the lineariser can adapt to these changes. The effect of the rotation of the demodulated output signal phase on convergence is studied. It is shown that the optimum value for this rotation is in the range of 15 to 70°. Spectrum-spreading results for different values of output back-off are included
Keywords :
adaptive signal processing; convergence of numerical methods; demodulators; electric distortion; land mobile radio; modulators; optimisation; polynomials; power amplifiers; quadrature amplitude modulation; radio transmitters; radiofrequency amplifiers; adaptive nonlinear predistorter; coefficients; computation load; convergence rate; demodulated output signal phase rotation; fast adaptive polynomial I predistorter; fast adaptive polynomial Q predistorter; gain error; high spectral efficiency modulation methods; mobile communication systems; output backoff; output demodulator; phase error; phase offset; postdistorter polynomial functions; predistorter quadrature modulator; quadrature amplitude modulation; spectrum spreading results; transmitter power amplifier nonlinearities;
fLanguage :
English
Journal_Title :
Communications, IEE Proceedings-
Publisher :
iet
ISSN :
1350-2425
Type :
jour
DOI :
10.1049/ip-com:19960237
Filename :
499721
Link To Document :
بازگشت