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2003 | 13 | 1 | 73-85

Tytuł artykułu

Towards a framework for continuous and discrete multidimensional systems

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Continuous multidimensional systems described by partial differential equations can be represented by discrete systems in a number of ways. However, the relations between the various forms of continuous, semi-continuous, and discrete multidimensional systems do not fit into an established framework like in the case of one-dimensional systems. This paper contributes to the development of such a framework in the case of multidimensional systems. First, different forms of partial differential equations of physics-based systems are presented. Secondly, it is shown how the different forms of continuous multidimensional systems lead to certain discrete models in current use (finite-difference models, multidimensional wave digital filters, transfer function models). The links between these discrete models are established on the basis of the respective continuous descriptions. The presentation is based on three examples of physical systems (heat flow, transmission of electrical signals, acoustic wave propagation).

Rocznik

Tom

13

Numer

1

Strony

73-85

Opis fizyczny

Daty

wydano
2003
otrzymano
2002-09-01
poprawiono
2003-01-01

Twórcy

  • Telecommunications Laboratory, University of Erlangen-Nuremberg, D-91058 Erlangen, Cauerstr. 7, Germany
  • Telecommunications Laboratory, University of Erlangen-Nuremberg, D-91058 Erlangen, Cauerstr. 7, Germany

Bibliografia

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  • Fettweis A. (1994): Multidimensional wave-digital principles: From filtering to numerical integration. - Proc. Int. Conf. Acoustics, Speech, and Signal Processing, ICASSP 94, Adelaide, pp. VI-173-VI-181.
  • Fettweis A. (1999): New results in numerically integrating PDEs by the wave digital approach. - Proc. Int. Symp. Circuits and Systems, ISCAS 99, Orlando, pp. V-17-V-20.
  • Fettweis A. and Nitsche G. (1991): Numerical integration of partial differential equations using principles of multidimensional wave digital filters. - J. VLSI Signal Process., Vol. 3, pp. 7-24.
  • Gregor J. (1998): The Cauchy problem for partial difference equations. - Acta Applicandae Mathematicae, Vol. 53, pp. 247-263.
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  • Rabenstein R. (1998): Transfer function models for multidimensional systems with bounded spatial domains. - Math. Comput. Modell. Dynam. Syst., Vol. 5, No. 3, pp. 259-278.
  • Rabenstein R. and Trautmann L. (1999): Solution of vector partial differential equations by transfer function models. - Proc. Int. Symp. Circuits and Systems, ISCAS 99, Orlando, pp. V-21-V-24.
  • Rabenstein R. and Zayati A. (2000): Sound field simulation by computational acoustics, Part I: Simulation algorithm. - Int. J. Adapt. Contr. Signal Process., Vol. 14, pp. 663-680.
  • Roesser R.P. (1975): A discrete state-space model for linear image processing. - IEEE Trans. Automat. Contr., Vol. AC-20, No. 1, pp. 1-75.
  • Rogers E., Gałkowski K. and Owens D.H. (1997): Control systems theory for linear repetitive processes. - Appl. Math. Comp. Sci., Vol. 7, No. 4, pp. 737-774.
  • Schetelig Th. and Rabenstein R. (1998): Simulation of three-dimensional sound propagation with multidimensional wave digital filters. - Proc. Int. Conf. Acoustics, Speech, and Signal Processing, ICASSP 98, Seattle, pp. 3537-3540.
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Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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