Title :
Optimum design of a predistortion RF power amplifier for multicarrier WCDMA applications
Author :
Cha, Jeonghyeon ; Yi, Jaehyok ; Kim, Jangheon ; Bumman Kim
Author_Institution :
Dept. of Electron., Pohang Univ. of Sci. & Technol., Kyungbuk, South Korea
Abstract :
This paper provides a design guide for optimum design of an RF power amplifier with a predistortion linearizer. For a two-tone signal, three performance degradation factors, higher order terms, amplitude, and phase mismatches are analyzed quantitatively. The results are implemented to the design of optimized predistortion power amplifier for a WCDMA signal application. For the experiments, a 2.4-GHz class-AB power amplifier is fabricated using an LDMOSFET with a 30-W peak envelope power. A simple third-order predistorter is used to measure the relative phases of the harmonics, as well as to linearize the amplifier. The performance of the optimized predistortion power amplifier is excellent for an IS-95 code-division-multiple-access signal. Finally, a method for reducing the memory effects of the amplifier is devised to get a good cancellation performance for a wide-band signal, and the performance degradation caused by the memory effects is analyzed. For a forward-link four-carrier WCDMA signal, the predistortion power amplifier delivers an adjacent channel leakage ratio of -46 dBc at a 4-W average output power with a cancellation of 13.4 dB.
Keywords :
MOSFET; UHF field effect transistors; UHF power amplifiers; adjacent channel interference; code division multiple access; harmonics; linearisation techniques; microwave power amplifiers; network synthesis; 2.4 GHz; 30 W; 4 W; IS-95 code-division-multiple-access signal; LDMOSFET; adjacent channel leakage ratio; amplifier linearization; amplifier memory effects; average output power; cancellation; class-AB power amplifier; design guide; forward-link four-carrier WCDMA signal; higher order terms; multicarrier WCDMA applications; optimum design; peak envelope power; performance degradation factors; phase mismatches; predistortion RF power amplifier; predistortion linearizer; relative harmonic phases; third-order predistorter; two-tone signal; wide-band signal cancellation performance; wireless communication systems; Broadband amplifiers; Degradation; Multiaccess communication; Performance analysis; Power amplifiers; Predistortion; Radio frequency; Radiofrequency amplifiers; Signal analysis; Signal design;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2003.822030