Title :
Channel-Selective Multi-Cell Digital Predistorter for Multi-Carrier Transmitters
Author :
Bassam, Seyed Aidin ; Helaoui, Mohamed ; Ghannouchi, Fadhel M.
Author_Institution :
Intelligent RF Radio Laboratory (iRadio Lab), Department of Electrical and Computer Engineering, University of Calgary, Calgary, AB, Canada T2N 1N4. S. A. Bassam is now with Powerwave Technologies Santa Ana, CA
fDate :
8/1/2012 12:00:00 AM
Abstract :
This paper demonstrates a new channel-selective multi-cell processing predistortion technique that compensates for the nonlinearities of multi-carrier transmitters. The proposed technique uses independent processing cells to compensate for the intra-band and inter-band distortions of nonlinear transmitters. This frequency-selective feature of the proposed technique significantly reduces the minimum sampling rate requirements of analog-to-digital and digital-to-analog converters, which are a critical issue for conventional digital predistortion (DPD) techniques dealing with wideband signals. The proposed technique was evaluated with four-carrier (1001) and six-carrier (100001) WCDMA signals, using a nonlinear 10-Watt power amplifier. The performance of the proposed technique was compared with look-up table, multi-branch and recently proposed frequency-selective DPDs, in terms of adjacent-channel power ratios (ACPRs) and sampling rate requirements. The proposed technique improved the ACPR and the carrier-to-intermodulation power ratio (CIMPR) of the 1001 WCDMA signal by more than 13 dB and 10 dB, respectively.
Keywords :
Baseband; Multiaccess communication; Nonlinear distortion; Polynomials; Transmitters; Vectors; Multi-cell processing; digital predistortion; frequency response; nonlinear distortion; nonlinear systems; polynomials; power amplifier; wideband systems;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2012.051012.100285A