A Transistor-Based Analog Predistorter With Unequal Delays for Memory Compensation

A transistor-based analog predistorter (APD) with memory effect compensation is represented. The nonlinearity of a gain amplifier generated by a low supply voltage is used as an error generator. The predistorted signal by the unequal-delayed nonlinear paths improves the linearity by compensating for...

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Veröffentlicht in:IEEE microwave and wireless components letters 2009-11, Vol.19 (11), p.743-745
Hauptverfasser: LEE, Yong-Sub, LEE, Mun-Woo, KAM, Sang-Ho, JEONG, Yoon-Ha
Format: Artikel
Sprache:eng
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Zusammenfassung:A transistor-based analog predistorter (APD) with memory effect compensation is represented. The nonlinearity of a gain amplifier generated by a low supply voltage is used as an error generator. The predistorted signal by the unequal-delayed nonlinear paths improves the linearity by compensating for memory effects of the power amplifier (PA). For verification, the proposed APD with three-branch nonlinear paths is implemented with a 30-W class-AB PA and tested using two-tone and various wideband code division multiple access (WCDMA) signals at 2.14 GHz. From the measured results, the proposed APD significantly improves the linearity of the PA with memory effects.
ISSN:1531-1309
2771-957X
1558-1764
2771-9588
DOI:10.1109/LMWC.2009.2032024