Title :
Distortion cancellation performance of miniature delay filters for feed-forward linear power amplifiers
Author_Institution :
Motorola Labs., Schaumburg, IL, USA
Abstract :
The technique of feed-forward amplitude control has been widely used in the linearization of power amplifiers for wireless communication systems. In this technique, an error signal due to third order intermodulation distortion (IMD) is extracted, amplified, and used to correct the delayed main line distorted signal. For example, a miniature prototype base station for the Global System for Mobile Communications/Code Division Multiple Access (GSM/CDMA) cellular system uses feed-forward amplifiers with bulky and expensive coaxial cables, about 20 feet in length, to provide about 25 ns of delay. This paper shows alternate space-saving approaches of achieving these delays using three different types of delay filters: electromagnetic interdigital/lumped (<2.5"), ceramic (<1.8"), and ladder-type surface acoustic wave (SAW) (0.15"). The delay lines introduce phase and amplitude imbalance and delay mismatch in the linearization loop due to fabrication tolerances. These adversely affect the IMD cancellation. Using an RF system simulation tool, this paper critically compares the IMD cancellation performance achieved using the three technologies. Simulation results show that the optimization of delay mismatch can achieve the desired cancellation more easily than other parameters. It is shown that, if the critical system parameter (phase deviation from linearity), is maintained at <2.5/spl deg/ peak-to-peak over a 20 MHz bandwidth in the frequency range 855 MHz to 875 MHz, one can achieve 25 dB of IMD cancellation performance. This paper concludes with the suggestion of a set of realistic specifications for a miniature delay filter for the low power loop of the feed-forward amplifier.
Keywords :
crystal filters; delay filters; feedforward; intermodulation distortion; ladder filters; power amplifiers; radiofrequency amplifiers; radiofrequency filters; surface acoustic wave filters; 20 MHz; 855 to 875 MHz; GSM/CDMA cellular system; RF system simulation; ceramic filter; coaxial cable; delay filter; electromagnetic interdigital/lumped filter; error signal; feedforward linear power amplifier; intermodulation distortion cancellation; ladder-type SAW filter; wireless communication system; Acoustic distortion; Delay lines; Feedforward systems; GSM; Intermodulation distortion; Multiaccess communication; Nonlinear filters; Power amplifiers; Propagation delay; Surface acoustic waves; Amplifiers; Artifacts; Computer Simulation; Equipment Design; Feedback; Microwaves; Models, Theoretical; Quality Control;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2002.1049741