Title :
Novel Technique for Wideband Digital Predistortion of Power Amplifiers With an Under-Sampling ADC
Author :
Youjiang Liu ; Yan, Jonmei J. ; Dabag, Hayg-Taniel ; Asbeck, P.M.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of California at San Diego, La Jolla, CA, USA
Abstract :
Most conventional wideband digital predistortion (DPD) techniques require the use of a very high-speed analog-to- digital converter (ADC) in the feedback path. This paper proposes a novel technique, termed under-sampling restoration digital predistortion (USR-DPD), to linearize wideband power amplifiers (PAs) with ADCs that operate at sampling rates much lower than required by Nyquist limits for the predistorted band (under-sampling ADCs). The USR processing is implemented in an iterative way to restore full-band PA output information from the under-sampled output signal, allowing memory DPD models to be successfully extracted. The USR-DPD can operate in two modes: without and with a band-limiting filter in the feedback path. In comparison with conventional DPD techniques, the requirement for ADC sampling frequency can be significantly reduced using the USR-DPD approach. Experimental tests were realized for two PAs with numerous signals (10-, 20-, 40-, and 60-MHz long-term evolution signals) using different ADC sampling frequencies. The DPD with the under-sampling ADC could achieve comparable performances to its counterpart with a full-rate ADC, while using 3-5 times lower sampling frequency, and around -50-dBc adjacent channel power ratios were achieved.
Keywords :
Long Term Evolution; analogue-digital conversion; power amplifiers; signal sampling; wideband amplifiers; ADC sampling frequency; Nyquist limits; USR processing; USR-DPD; band-limiting filter; feedback path; frequency 10 MHz to 20 MHz; frequency 40 MHz; frequency 60 MHz; long-term evolution signals; memory DPD models; predistorted band; under-sampling ADC; under-sampling restoration digital predistortion; wideband digital predistortion; wideband power amplifiers; Baseband; Equations; Gain measurement; Predistortion; Transfer functions; Wideband; Analog-to-digital converter (ADC); digital predistortion (DPD); memory polynomial (MP); power amplifiers (PAs); under-sampling; wideband;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2014.2360398