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LEDVINA, J. HORSKÝ, P. VYKYDAL, L.
Original Title
Fast Automatic Tuning of a Synthetic Inductor for Automotive Transformer-less Ultrasonic Sensor in Park Assist Systems
Type
journal article in Web of Science
Language
English
Original Abstract
This work presents a novel shunt tuning method suitable for transformer-less ultrasonic sensors in park assist systems. The method enables tuning of an inductive part of LR shunt, which is used for a transducer damping. The method relies on knowledge of a transducer own serial resonance frequency and measurement of a parallel resonance frequency, which corresponds to the transducer parasitic capacity and shunt inductance. From the ratio of these two resonance frequencies the method predicts how the inductance must be tuned to achieve optimal damping performance. To enable measurement of the parallel resonance frequency inductance scaling by a factor of four is employed. The scaled inductance shifts the parallel resonance frequency away from the serial resonance frequency and thus distinguishes them. The presented work is supported by practical experiments using a fabricated test chip with a tunable synthetic inductor that confirms its performance and shows improvements compared to previous solutions without adaptive tuning mechanisms.
Keywords
Acoustic sensors; Adaptive algorithms; Sonar navigation; Tuned circuits; Ultrasonic transducers
Authors
LEDVINA, J.; HORSKÝ, P.; VYKYDAL, L.
Released
31. 7. 2019
ISBN
1530-437X
Periodical
IEEE SENSORS JOURNAL
Year of study
19
Number
22
State
United States of America
Pages from
10568
Pages to
10573
Pages count
6
URL
https://ieeexplore.ieee.org/document/8782544
BibTex
@article{BUT158177, author="Jan {Ledvina} and Pavel {Horský} and Lukáš {Vykydal}", title="Fast Automatic Tuning of a Synthetic Inductor for Automotive Transformer-less Ultrasonic Sensor in Park Assist Systems", journal="IEEE SENSORS JOURNAL", year="2019", volume="19", number="22", pages="10568--10573", doi="10.1109/JSEN.2019.2932300", issn="1530-437X", url="https://ieeexplore.ieee.org/document/8782544" }