Investigation of Different Conditions to Detect Cycles in Linearly Implicit Quantized State Systems

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Abstract

The increasing complexity of modern engineering systems presents a challenge to the digital simulation of these systems which usually can be represented by differential equations. The Linearly Implicit Quantized State System (LIQSS) offers an alternative approach to traditional numerical integration techniques for solving Ordinary Differential Equations (ODEs). This method proved effective for handling discontinuous and large stiff systems. However, the inherent discrete nature of LIQSS may introduce oscillations that result in unnecessary computational steps. The current oscillation detection mechanism relies on a condition that checks the significance of the derivatives, but it could be further improved. This paper describes a different cycle detection mechanism and presents the outcomes using LIQSS order one in simulating the Advection Diffusion problem. The efficiency of this new cycle detection mechanism is verified by comparing the performance of the current solver against the new version as well as a reference solution using a Runge-Kutta method of order14.

Original languageEnglish
Title of host publicationProceedings - 2024 3rd International Conference on Computational Modelling, Simulation and Optimization, ICCMSO 2024
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages469-473
Number of pages5
ISBN (Electronic)9798350361391
DOIs
Publication statusPublished - 2024
Event3rd International Conference on Computational Modelling, Simulation and Optimization, ICCMSO 2024 - Phuket, Thailand
Duration: 14 Jun 202416 Jun 2024

Publication series

NameProceedings - 2024 3rd International Conference on Computational Modelling, Simulation and Optimization, ICCMSO 2024

Conference

Conference3rd International Conference on Computational Modelling, Simulation and Optimization, ICCMSO 2024
Country/TerritoryThailand
CityPhuket
Period14/06/2416/06/24

Keywords

  • Cycle Detection
  • Numerical Integration
  • Ordinary Differential Equations
  • Quantized State Systems
  • Stiffness

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