DocumentCode :
1678495
Title :
Adaptation of a digital predistortion technique based on intersymbol interpolation
Author :
Levy, Y. ; Karam, G. ; Sari, H.
Author_Institution :
Soc. Anonyme de Telecommun., Paris, France
Volume :
1
fYear :
1995
Firstpage :
145
Abstract :
This paper investigates the performance of several adaptation strategies of a digital predistortion technique which efficiently compensates for power amplifier nonlinearities in bandwidth-efficient digital communication systems. The study includes the gradient algorithm in Cartesian coordinates, the gradient algorithm in polar coordinates, the predistorter optimization using averaging, as well as the computation of the adaptation terms at the receiver side and their feeding back to the transmitter using a return channel. Our results indicate that the best performance is achieved when the algorithm is implemented in polar coordinates and the adaptation terms are computed at the transmitter using an auxiliary local demodulator. Numerical results are given for a radio system employing the 32-QAM signal format
Keywords :
adaptive systems; compensation; digital radio; interpolation; quadrature amplitude modulation; radio transmitters; 32-QAM signal format; Cartesian coordinates; adaptation strategies; auxiliary local demodulator; bandwidth-efficient digital communication systems; compensation; digital predistortion technique; feedback; gradient algorithm; intersymbol interpolation; performance; polar coordinates; power amplifier nonlinearities; predistorter optimization; radio system; receiver; return channel; transmitter; Auxiliary transmitters; Constellation diagram; Demodulation; Digital communication; Interpolation; Power amplifiers; Predistortion; Quadrature amplitude modulation; Radio transmitters; Signal processing algorithms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Telecommunications Conference, 1995. GLOBECOM '95., IEEE
Print_ISBN :
0-7803-2509-5
Type :
conf
DOI :
10.1109/GLOCOM.1995.500340
Filename :
500340
Link To Document :
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