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Erschienen in: Production Engineering 4-5/2017

06.07.2017 | Machine Tool

A methodology for areal modeling of structural dynamics based on a Takagi–Sugeno fuzzy system

verfasst von: S. J. Pieczona, M. F. Zaeh

Erschienen in: Production Engineering | Ausgabe 4-5/2017

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Abstract

For simulation analysis and controller design mathematical models are necessary. This also applies to characterize the structural dynamics of mechanical systems, but current modeling approaches are limited to describe a restricted amount of predefined geometric points. A procedure to model the mechanical behavior of an arbitrary point along a line or within a surface area is missing. We propose a novel method to tackle this issue, by adapting Takagi–Sugeno Fuzzy Systems and combining them with the general linear description of mechanical systems. The presented method consists of two paths, each designed to meet a specific purpose, subject to numerical complexity and representation aberration. In the end, both cases lead to nonlinear differential equations, which provide a continuous estimation of the properties of an area. The accuracy and performance of our approach is verified by different experimental and simulation setups. One specific example is a galvanometer laser scanner, for which the new method is inevitable for a precise system modeling.

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Literatur
1.
Zurück zum Zitat Schweier M, Heins JF, Haubold WM, Zaeh MF (2013) Spatter formation in laser welding with beam oscillation. Phys Proced 41:20–30CrossRef Schweier M, Heins JF, Haubold WM, Zaeh MF (2013) Spatter formation in laser welding with beam oscillation. Phys Proced 41:20–30CrossRef
2.
Zurück zum Zitat Yamaguchi T, Hirata M, Pang CK (2014) Advances in high-performance motion control of mechatronic systems. CRC Press, Abingdon Yamaguchi T, Hirata M, Pang CK (2014) Advances in high-performance motion control of mechatronic systems. CRC Press, Abingdon
3.
Zurück zum Zitat Mnerie C A, Preitl S, Duma V-F (2013) Performance enhancement of galvanometer scanners using extended control structures. In: IEEE 8th international symposium on applied computational intelligence and informatics (SACI), Timisoara, pp 127–130 Mnerie C A, Preitl S, Duma V-F (2013) Performance enhancement of galvanometer scanners using extended control structures. In: IEEE 8th international symposium on applied computational intelligence and informatics (SACI), Timisoara, pp 127–130
4.
Zurück zum Zitat Yoo H W, Ito S, Verhaegen M, Schitter G (2013) Transformation-based iterative learning control for non-collocated sensing of a galvanometer scanner. In: 2013 IEEE 8th international symposium on applied computational intelligence and informatics (SACI), Timisoara, pp 1204–1209 Yoo H W, Ito S, Verhaegen M, Schitter G (2013) Transformation-based iterative learning control for non-collocated sensing of a galvanometer scanner. In: 2013 IEEE 8th international symposium on applied computational intelligence and informatics (SACI), Timisoara, pp 1204–1209
5.
Zurück zum Zitat Toyama S, Okado Y, Maeda Y, Iwasaki M, Hirai H (2013) Adaptive deadbeat feedforward compensation for robust positioning performance against plant perturbations. In: IEEE international conference on mechatronics (ICM), Vicenza, pp 670–675 Toyama S, Okado Y, Maeda Y, Iwasaki M, Hirai H (2013) Adaptive deadbeat feedforward compensation for robust positioning performance against plant perturbations. In: IEEE international conference on mechatronics (ICM), Vicenza, pp 670–675
6.
Zurück zum Zitat Ewins DJ (1995) Modal testing: theory and practice. Research Studies Press, Taunton, Newtown Ewins DJ (1995) Modal testing: theory and practice. Research Studies Press, Taunton, Newtown
7.
Zurück zum Zitat Maia NMM, Silva JMM (1997) Theoretical and experimental modal analysis. Research Studies Press Ltd., Taunton, Newtown Maia NMM, Silva JMM (1997) Theoretical and experimental modal analysis. Research Studies Press Ltd., Taunton, Newtown
8.
Zurück zum Zitat Pieczona SJ, Muratore F, Zaeh MF (2016) An approach for modeling the structural dynamics of a mechanical system based on a Takagi–Sugeno representation. In: Conference on competitive manufacturing, Stellenbosch, pp 391–398 Pieczona SJ, Muratore F, Zaeh MF (2016) An approach for modeling the structural dynamics of a mechanical system based on a Takagi–Sugeno representation. In: Conference on competitive manufacturing, Stellenbosch, pp 391–398
9.
Zurück zum Zitat Craig RR, Kurdila A (2006) Fundamentals of structural dynamics, 2nd edn. Wiley, HobokenMATH Craig RR, Kurdila A (2006) Fundamentals of structural dynamics, 2nd edn. Wiley, HobokenMATH
11.
Zurück zum Zitat Hughes T (2012) Finite element method: linear static and dynamic finite element analysis. Dover Publications, Mineola Hughes T (2012) Finite element method: linear static and dynamic finite element analysis. Dover Publications, Mineola
12.
Zurück zum Zitat Chen C-W, Yeh K, Chiang W-L, Chen C-Y, Wu D-J (2007) Modeling, H∞ control and stability analysis for structural systems using Takagi–Sugeno fuzzy model. J Vib Control 13:1519–1534MathSciNetCrossRefMATH Chen C-W, Yeh K, Chiang W-L, Chen C-Y, Wu D-J (2007) Modeling, H control and stability analysis for structural systems using Takagi–Sugeno fuzzy model. J Vib Control 13:1519–1534MathSciNetCrossRefMATH
13.
Zurück zum Zitat Chen C-W (2006) Stability conditions of fuzzy systems and its application to structural and mechanical systems. Adv Eng Softw 37:624–629CrossRef Chen C-W (2006) Stability conditions of fuzzy systems and its application to structural and mechanical systems. Adv Eng Softw 37:624–629CrossRef
14.
Zurück zum Zitat Ferreira CCT, de Oliveira Serra GL (2011) Fuzzy frequency response estimation from experimental data: definition and application in mechanical structures of aircraft and aerospace vehicles. In: 9th IEEE international conference on control and automation, vol 9, Santiago, pp 1225–1230 Ferreira CCT, de Oliveira Serra GL (2011) Fuzzy frequency response estimation from experimental data: definition and application in mechanical structures of aircraft and aerospace vehicles. In: 9th IEEE international conference on control and automation, vol 9, Santiago, pp 1225–1230
15.
Zurück zum Zitat Gawronski WK (2004) Advanced structural dynamics and active control of structures. Springer, New YorkCrossRefMATH Gawronski WK (2004) Advanced structural dynamics and active control of structures. Springer, New YorkCrossRefMATH
16.
Zurück zum Zitat Takagi T, Sugeno M (1985) Fuzzy identification of systems and its applications to modelling and control. IEEE Trans Syst Man Cybern 15:116–132CrossRefMATH Takagi T, Sugeno M (1985) Fuzzy identification of systems and its applications to modelling and control. IEEE Trans Syst Man Cybern 15:116–132CrossRefMATH
17.
Zurück zum Zitat Tanaka K, Wang HO (2001) Fuzzy control systems design and analysis: a linear matrix inequality approach. Wiley, New YorkCrossRef Tanaka K, Wang HO (2001) Fuzzy control systems design and analysis: a linear matrix inequality approach. Wiley, New YorkCrossRef
18.
Zurück zum Zitat Diepold KJ, Pieczona SJ (2012) Recurrent Takagi–Sugeno fuzzy interpolation for switched linear systems and hybrid automata. In: Proceedings of the IEEE international conference on fuzzy systems (FUZZ-IEEE), Brisbane, pp 1–8 Diepold KJ, Pieczona SJ (2012) Recurrent Takagi–Sugeno fuzzy interpolation for switched linear systems and hybrid automata. In: Proceedings of the IEEE international conference on fuzzy systems (FUZZ-IEEE), Brisbane, pp 1–8
19.
20.
Zurück zum Zitat Kawamoto S, Tada K, Ishigame A, Taniguchi T (1992) An approach to stability analysis of second order fuzzy systems. In: Proceedings of first IEEE international conference on fuzzy systems, vol 1, San Diego, pp 1427–1434 Kawamoto S, Tada K, Ishigame A, Taniguchi T (1992) An approach to stability analysis of second order fuzzy systems. In: Proceedings of first IEEE international conference on fuzzy systems, vol 1, San Diego, pp 1427–1434
Metadaten
Titel
A methodology for areal modeling of structural dynamics based on a Takagi–Sugeno fuzzy system
verfasst von
S. J. Pieczona
M. F. Zaeh
Publikationsdatum
06.07.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
Production Engineering / Ausgabe 4-5/2017
Print ISSN: 0944-6524
Elektronische ISSN: 1863-7353
DOI
https://doi.org/10.1007/s11740-017-0748-1

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