An Outphasing Architecture Based on Parallel Radio Frequency–Pulse Width Modulation Method for All-Digital Transmitter

Author:

Wang Xu1,Zhou Qiang2ORCID,Wang Min1,Fu Haoyang2ORCID

Affiliation:

1. School of Electronic and Information Engineering, Nanjing University of Information Science and Technology, Nanjing 210044, China

2. The Sixty-Third Research Institute, National University of Defense Technology, Nanjing 210007, China

Abstract

For the existing outphasing architectures of an all-digital transmitter (ADTx), the required sampling rate of the signal is too high, which increases the difficulty of digital radio frequency pulse width modulation (RF-PWM) processing. In this paper, we present an outphasing architecture based on the parallel RF-PWM method for an ADTx. Through polyphase interpolation, two baseband outphasing signals are divided into multiple low-rate signals to process simultaneously. The parallel outphasing signals are modulated and encoded to obtain 1-bit parallel signals, which are, respectively, transmitted to multigigabit transceivers (MGTs) to generate two two-level high-speed pulses with different phases. Finally, a three-level high-speed pulse is synthesized and amplified through the switching power amplifier. Through this parallel scheme, the sampling rate of digital RF-PWM signal processing is effectively reduced. Moreover, to explore a pulse encoding method, the outphasing architecture is combined with a zero-crossing comparison through an angle calculation and quadrant judgment, which simplifies the modulation and encoding process. In addition, the impact of the sub-filter order and the number of parallel paths on system performance is analyzed. The simulation results show that for a 16QAM signal with a baseband bandwidth of 20 MHz and a carrier frequency of 200 MHz, the adjacent channel power ratio (ACPR) is below −45 dBc and the error vector magnitude (EVM) is below 1% in the proposed scheme.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Reference21 articles.

1. Zhu, L., Zhou, Q., Wei, Z.H., and Chen, J.B. (2021, January 10–14). A novel all digital transmitter with three-level quadrature differential RF-PWM. Proceedings of the Journal of Physics: Conference Series, Orlando, FL, USA.

2. Fu, H.Y., Zhou, Q., Zhu, L., Chen, Z., Wei, Z.H., and Zeng, S.Y. (2022). A Five-Level RF-PWM Method with Third and Fifth Harmonic Elimination for All-Digital Transmitters. Electronics, 11.

3. The research of level-transform strategy for switching amplifier based on 2bit delta-sigma modulator;Chen;Acta Electron. Sin.,2015

4. Radio frequency pulse width modulation;Raab;IEEE Trans. Commun.,1973

5. Efficiency of Outphasing RF Power-Amplifier Systems;Raab;IEEE Trans. Commun.,1985

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