arrow
Return

Nonlinear modulation with low-power sensor networks using undersampling

delete2021-01-14
delete8
delete
OA
AI
P
Peter Oppermann *
L
Lennart Dorendorf
M
Marcus Rutner
C
Christian Renner
DOI:10.1177/1475921720982885delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Nonlinear modulation is a promising technique for ultrasonic non-destructive damage identification. A wireless sensor network is ideally suited to monitor large structures using nonlinear modulation in a cost-efficient manner. However, existing approaches rely on high sampling rates and resource-demanding computations that are not feasible on low-cost and low-power sensor network devices. We present a new damage indicator that uses the short-time Fourier transform to derive amplitude and phase modulation with less computational effort and memory usage. Evaluation of the proposed method using real experiment data exhibits performance and reliability similar to the conventionally used modulation index. Undersampling is demonstrated, which reduces the memory demand in a test scenario by more than 100 times, and the required energy for sampling and processing more than four times. The loss of accuracy introduced by undersampling is shown to be negligible.
Keywords:
Vibro-acoustics
nonlinear modulation
structural health monitoring
wireless sensor network
low power
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

S
Structural Health Monitoring-An International Journal
IF:
5.7
Papers:
2.3K
Citations:
1.1W

Organization

H
Hamburg University of Technology
Scholars:
2.9K
Papers: 2.6K
Citations: 4.4K
Cited Papers

Cited Papers

Development of a stick-and-detect wireless sensor node for fatigue crack detection
err2016-09-24
err32
PREAI
errLiu, Peipei; Lim, Hyung Jin; Yang, Suyoung; Sohn, Hoon; Lee, Cheul Hee; Yi, Yung; Kim, Daewoo; Jung, Jinhwan; Bae, In-hwan
errShare
errSave
Genetic and Environmental Contributions to Regional Cortical Surface Area in Humans: A Magnetic Resonance Imaging Twin Study
err2011-03-04
err0
errOAAI
errLisa T. Eyler; Elizabeth Prom-Wormley; Matthew S. Panizzon; Allison R. Kaup; Christine Fennema-Notestine; Michael C. Neale; Terry L. Jernigan; Bruce Fischl; Carol E. Franz; Michael J. Lyons; Michael Grant; Allison Stevens; Jennifer Pacheco; Michele E. Perry; J. Eric Schmitt; Larry J. Seidman; Heidi W. Thermenos; Ming T. Tsuang; Chi-Hua Chen; Wesley K. Thompson; Amy Jak; Anders M. Dale; William S. Kremen
errShare
errSave
Self-Powered Sensors for Monitoring of Highway Bridges
err2009-11-01
err182
PREAI
errSazonov, Edward; Li, Haodong; Curry, Darrell; Pillay, Pragasen
errShare
errSave
Acute in vivo effect of valproic acid on the GABAergic system in rat brain: A [ 11 C]Ro15-4513 microPET study
err2018-02-01
err0
PREAI
errFreja Bertelsen; Anne M. Landau; Karina H. Vase; Jan Jacobsen; Jørgen Scheel-Krüger; Arne Møller
errShare
errSave
Vibro-acoustic modulation-based damage identification in a composite skin-stiffener structure
err2016-08-03
err25
errOAAI
errOoijevaar, Ted; Rogge, Matthew D.; Loendersloot, Richard; Warnet, Laurent; Akkerman, Remko; Tinga, Tiedo
errShare
errSave
Exploring the electronic structure of nitrogen-modified TiO2 photocatalysts through photocurrent and surface photovoltage studies
err2007-10-01
err0
PREAI
errRadim Beranek; Bernhard Neumann; Shanmugasundaram Sakthivel; Marcin Janczarek; Thomas Dittrich; Helmut Tributsch; Horst Kisch
errShare
errSave
Impact damage detection in laminated composites by non-linear vibro-acoustic wave modulations
err2014-10-01
err124
PREAI
errKlepka, A.; Pieczonka, L.; Staszewski, W. J.; Aymerich, F.
errShare
errSave
researcher View more