Title :
Spectra-Folding Feedback Architecture for Concurrent Dual-Band Power Amplifier Predistortion
Author :
Yuelin Ma ; Yamao, Yasushi
Author_Institution :
Corp. Corp. R&D Center, Toshiba Corp., Kawasaki, Japan
Abstract :
This paper proposes a spectra-folding feedback (SFFB) architecture for digital predistortion (DPD) of concurrent dual-band power amplifiers (PAs). Conventional dual-band DPD contains a dual-branch feedback path to receive the PA output signals at respective bands. The proposed architecture, however, is constructed by a single-branch receiving path, so that the hardware expense (such as down converters, filters, or analog-to-digital converters) of the feedback path is significantly reduced. In this architecture, simple modifications are made to the down converter to allow the use of only one analog-to-digital converter. With the proposed signal processing in the baseband, the SFFB DPD can achieve comparative performance as the conventional dual-branch DPD. Experiments were performed using various configurations of LTE/LTE-Advanced (long-term evolution/long-term evolution advanced) signals of up to 80 MHz contiguous bandwidth and carrier spacing of 1 GHz. It is clearly shown by the experimental results that the proposed SFFB DPD can achieve satisfactory linearization performance, with significantly reduced hardware complexity.
Keywords :
Long Term Evolution; analogue-digital conversion; power amplifiers; signal processing; LTE-A; Long-Term Evolution Advanced; SFFB DPD; analog-to-digital converter; carrier spacing; concurrent dual-band power amplifier predistortion; digital predistortion; down converter; dual-branch feedback path; frequency 1 GHz; signal processing; spectra-folding feedback architecture; Baseband; Bills of materials; Computer architecture; Dual band; Mixers; Predistortion; Radio frequency; Analog-to-digital converter (ADC); broad band; carrier aggregation; crossband distortion; dual-band amplifier; dual-band receiver; feedback path; linearizer; long-term evolution (LTE); long-term evolution advanced (LTE-Advanced); predistortion;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2015.2472011