Title :
Digital Baseband Predistortion Based Linearized Broadband Inverse Class-E Power Amplifier
Author :
Thian, Mury ; Xiao, Ming ; Gardner, Peter
Author_Institution :
Dept. of Electron., Univ. of Birmingham, Birmingham
Abstract :
A newly introduced inverse class-E power amplifier (PA) was designed, simulated, fabricated, and characterized. The PA operated at 2.26 GHz and delivered 20.4-dBm output power with peak drain efficiency (DE) of 65% and power gain of 12 dB. Broadband performance was achieved across a 300-MHz bandwidth with DE of better than 50% and 1-dB output-power flatness. The concept of enhanced injection predistortion with a capability to selectively suppress unwanted sub-frequency components and hence suitable for memory effects minimization is described coupled with a new technique that facilitates an accurate measurement of the phase of the third-order intermodulation (IM3) products. A robust iterative computational algorithm proposed in this paper dispenses with the need for manual tuning of amplitude and phase of the IM3 injected signals as commonly employed in the previous publications. The constructed inverse class-E PA was subjected to a nonconstant envelope 16 quadrature amplitude modulation signal and was linearized using combined lookup table (LUT) and enhanced injection technique from which superior properties from each technique can be simultaneously adopted. The proposed method resulted in 0.7% measured error vector magnitude (in rms) and 34-dB adjacent channel leakage power ratio improvement, which was 10 dB better than that achieved using the LUT predistortion alone.
Keywords :
power amplifiers; radiofrequency amplifiers; signal processing; table lookup; IM3 injected signals; bandwidth 300 MHz; channel leakage power ratio; digital baseband predistortion; drain efficiency; enhanced injection technique; error vector magnitude; frequency 2.26 GHz; gain 12 dB; linearized broadband inverse class-E power amplifier; lookup table; manual tuning; quadrature amplitude modulation signal; third-order intermodulation; Class E; injection; linearization; lookup table (LUT); memory effects; power amplifier (PA); predistortion;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2008.2011164