Analysis of Dynamic Properties of Accelerometer Using Fractional Derivatives

The paper outlines the use of fractional derivatives for dynamic measurements while developing a method of improved description of dynamic properties of accelerometer, which the authors consider to be the original and unique achievement of their work. The main objective of the work is an implementat...

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Main Authors: Miroslaw Luft, Daniel Pietruszczak, Elzbieta Szychta
Format: Article
Language:English
Published: University of Žilina 2015-12-01
Series:Communications
Subjects:
Online Access:https://komunikacie.uniza.sk/artkey/csl-201504-0007_analysis-of-dynamic-properties-of-accelerometer-using-fractional-derivatives.php
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author Miroslaw Luft
Daniel Pietruszczak
Elzbieta Szychta
author_facet Miroslaw Luft
Daniel Pietruszczak
Elzbieta Szychta
author_sort Miroslaw Luft
collection DOAJ
description The paper outlines the use of fractional derivatives for dynamic measurements while developing a method of improved description of dynamic properties of accelerometer, which the authors consider to be the original and unique achievement of their work. The main objective of the work is an implementation of a fractional calculus-based method which allows for a description of dynamic properties of signal processing of measuring transducers with fractional orders. A dynamics of transducer is identified by the ARX method (AutoRegressive with EXternal input identification method). Identification of accelerometer was accomplished with the use of the MATLAB&Simulink package.
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spelling doaj.art-b575fa792c374cb1bb5f06b36c57ff012023-04-14T06:31:00ZengUniversity of ŽilinaCommunications1335-42052585-78782015-12-01174404410.26552/com.C.2015.4.40-44csl-201504-0007Analysis of Dynamic Properties of Accelerometer Using Fractional DerivativesMiroslaw Luft0Daniel Pietruszczak1Elzbieta Szychta2Faculty of Transport and Electrical Engineering, Kazimierz Pulaski University of Technology and Humanities in Radom, PolandFaculty of Transport and Electrical Engineering, Kazimierz Pulaski University of Technology and Humanities in Radom, PolandFaculty of Transport and Electrical Engineering, Kazimierz Pulaski University of Technology and Humanities in Radom, PolandThe paper outlines the use of fractional derivatives for dynamic measurements while developing a method of improved description of dynamic properties of accelerometer, which the authors consider to be the original and unique achievement of their work. The main objective of the work is an implementation of a fractional calculus-based method which allows for a description of dynamic properties of signal processing of measuring transducers with fractional orders. A dynamics of transducer is identified by the ARX method (AutoRegressive with EXternal input identification method). Identification of accelerometer was accomplished with the use of the MATLAB&Simulink package.https://komunikacie.uniza.sk/artkey/csl-201504-0007_analysis-of-dynamic-properties-of-accelerometer-using-fractional-derivatives.phpaccelerometerarx methodfractional calculusfractional derivativesmatlab&simulinkmeasuring transducer
spellingShingle Miroslaw Luft
Daniel Pietruszczak
Elzbieta Szychta
Analysis of Dynamic Properties of Accelerometer Using Fractional Derivatives
Communications
accelerometer
arx method
fractional calculus
fractional derivatives
matlab&
simulink
measuring transducer
title Analysis of Dynamic Properties of Accelerometer Using Fractional Derivatives
title_full Analysis of Dynamic Properties of Accelerometer Using Fractional Derivatives
title_fullStr Analysis of Dynamic Properties of Accelerometer Using Fractional Derivatives
title_full_unstemmed Analysis of Dynamic Properties of Accelerometer Using Fractional Derivatives
title_short Analysis of Dynamic Properties of Accelerometer Using Fractional Derivatives
title_sort analysis of dynamic properties of accelerometer using fractional derivatives
topic accelerometer
arx method
fractional calculus
fractional derivatives
matlab&
simulink
measuring transducer
url https://komunikacie.uniza.sk/artkey/csl-201504-0007_analysis-of-dynamic-properties-of-accelerometer-using-fractional-derivatives.php
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AT danielpietruszczak analysisofdynamicpropertiesofaccelerometerusingfractionalderivatives
AT elzbietaszychta analysisofdynamicpropertiesofaccelerometerusingfractionalderivatives