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Main Authors: Malmberg, Hampus, Feyling, Fredrik, de la Rosa, Jose M
Format: Preprint
Published: 2022
Subjects:
Online Access:https://arxiv.org/abs/2211.06745
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author Malmberg, Hampus
Feyling, Fredrik
de la Rosa, Jose M
author_facet Malmberg, Hampus
Feyling, Fredrik
de la Rosa, Jose M
contents In this paper, the design flexibility of the control-bounded analog-to-digital converter principle is demonstrated by considering band-pass analog-to-digital conversion. We show how a low-pass control-bounded analog-to-digital converter can be translated into a band-pass version where the guaranteed stability, converter bandwidth, and signal-to-noise ratio are preserved while the center frequency for conversion can be positioned freely. The proposed converter is validated with behavioral simulations for a variety of filter orders, notch-filter frequencies, and oversampling ratios. Finally, robustness against component variations is demonstrated by Monte Carlo simulations.
format Preprint
id arxiv_https___arxiv_org_abs_2211_06745
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Quadrature Control-Bounded ADCs
Malmberg, Hampus
Feyling, Fredrik
de la Rosa, Jose M
Systems and Control
Signal Processing
In this paper, the design flexibility of the control-bounded analog-to-digital converter principle is demonstrated by considering band-pass analog-to-digital conversion. We show how a low-pass control-bounded analog-to-digital converter can be translated into a band-pass version where the guaranteed stability, converter bandwidth, and signal-to-noise ratio are preserved while the center frequency for conversion can be positioned freely. The proposed converter is validated with behavioral simulations for a variety of filter orders, notch-filter frequencies, and oversampling ratios. Finally, robustness against component variations is demonstrated by Monte Carlo simulations.
title Quadrature Control-Bounded ADCs
topic Systems and Control
Signal Processing
url https://arxiv.org/abs/2211.06745