Anda belum login :: 09 May 2025 19:49 WIB
Detail
ArtikelQuantization-Based Simulation Of Differential Algebraic Equation Systems  
Oleh: Kofman, Ernesto
Jenis: Article from Journal - ilmiah internasional
Dalam koleksi: Simulation vol. 79 no. 7 (Jul. 2003), page 363-376.
Topik: DEVS; ODE simulation; DAE simulation; quantized state systems
Fulltext: 363.pdf (197.24KB)
Isi artikelThe author studies the use of first- and second-order quantized state systems methods (QSS and QSS2) in the simulation of differential algebraic equation (DAE) systems. A general methodology to obtain the QSS and the QSS2 approximations of a generic DAE of index 1 is provided, and their corresponding discrete event system (DEVS) implementations are developed. Furthermore, an alternative method is given based on the block-by-block translation from block diagrams containing algebraic loops into coupled DEVS representations of the corresponding QSS and QSS2 approximations. The author shows that the main advantages provided by the quantization-based methods in the simulation of ordinary differential equations—stability properties, reduction of computational costs, sparsity exploitation, and so on—are still verified in DAEs. These advantages are illustrated and discussed in the simulation of two examples that show the main features of the methodology.
Opini AndaKlik untuk menuliskan opini Anda tentang koleksi ini!

Kembali
design
 
Process time: 0 second(s)