Title :
An RF Carrier Bursting System Using Partial Quantization Noise Cancellation
Author :
Gustavsson, Ulf ; Eriksson, Thomas ; Nemati, Hossein Mashad ; Saad, Puteh ; Singerl, Peter ; Fager, Christian
Author_Institution :
Ericsson AB, Stockholm, Sweden
fDate :
3/1/2012 12:00:00 AM
Abstract :
This paper introduces a method for bandpass cancellation of the quantization noise occurring in high efficiency, envelope pulsed transmitter architectures-or carrier bursting. An equivalent complex baseband model of the proposed system, including the -modulator and cancellation signal generation, is developed. Analysis of the baseband model is performed, leading to analytical expressions of the power amplifier drain efficiency, assuming the use of an ideal class B power amplifier. These expressions are further used to study the impact of key system parameters, i.e. the compensation signal variance and clipping probability, on the class B power amplifier drain efficiency and signal-to-noise ratio. The paper concludes with simulations followed by practical measurements in order to validate the functionality of the method and to evaluate the performance-trend predictions made by the theoretical framework in terms of efficiency and spectral purity.
Keywords :
interference suppression; modulators; power amplifiers; quantisation (signal); radiofrequency amplifiers; RF carrier bursting system; bandpass cancellation; cancellation signal generation; class B power amplifier drain efficiency; clipping probability; compensation signal variance; envelope pulsed transmitter architecture; equivalent complex baseband model; functionality; modulator; partial quantization noise cancellation; performance-trend prediction; signal-to-noise ratio; spectral purity; Bandwidth; Baseband; Encoding; Noise; Quantization; Radio frequency; Transmitters; $SigmaDelta$-modulation; Carrier bursting; noise-shaped coding (NSC); pulsed RF transmitter architectures; quantization noise;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2011.2167271