Single-Bit All-Digital Frequency Synthesis Using Homodyne Sigma-Delta Modulation

All-digital frequency synthesis using bandpass sigma-delta modulation to achieve spectrally clean single-bit output is presented and mathematically analyzed resulting in a complete model to predict the stability and output spectrum. The quadrature homodyne filter architecture is introduced resulting...

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Veröffentlicht in:IEEE transactions on ultrasonics, ferroelectrics, and frequency control ferroelectrics, and frequency control, 2017-02, Vol.64 (2), p.463-474
1. Verfasser: Sotiriadis, Paul P.
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description All-digital frequency synthesis using bandpass sigma-delta modulation to achieve spectrally clean single-bit output is presented and mathematically analyzed resulting in a complete model to predict the stability and output spectrum. The quadrature homodyne filter architecture is introduced resulting in efficient implementations of carrier-frequency-centered bandpass filters for the modulator. A multiplierless version of the quadrature homodyne filter architecture is also introduced to reduce complexity while maintaining a clean in-band spectrum. MATLAB and SIMULINK simulation results present the potential capabilities of the synthesizer architectures and validate the accuracy of the developed theoretical framework.
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subjects Architecture
Band-pass filters
Bandpass filters
Computer simulation
Delta modulation
Digital signal processing
digital-to-analog converter
digital-to-frequency converter
direct digital synthesis (DDS)
feedback loop
filter
Frequency control
Frequency modulation
frequency spurs
frequency synthesis
Frequency synthesizers
Modulation
noise shaping
quantization
Quantization (signal)
Sigma-delta modulation
Stability analysis
Synthesis
title Single-Bit All-Digital Frequency Synthesis Using Homodyne Sigma-Delta Modulation
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