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Mathematics > Dynamical Systems

arXiv:2405.07328 (math)
[Submitted on 12 May 2024]

Title:An algorithm for distributed time delay identification based on a mixed Erlang kernel approximation and the linear chain trick

Authors:Tobias K. S. Ritschel, John Wyller
View a PDF of the paper titled An algorithm for distributed time delay identification based on a mixed Erlang kernel approximation and the linear chain trick, by Tobias K. S. Ritschel and John Wyller
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Abstract:Time delays are ubiquitous in industry and nature, and they significantly affect both transient dynamics and stability properties. Consequently, it is often necessary to identify and account for the delays when, e.g., designing a model-based control strategy. However, identifying delays in differential equations is not straightforward and requires specialized methods. Therefore, we propose an algorithm for identifying distributed delays in delay differential equations (DDEs) that only involves simulation of ordinary differential equations (ODEs). Specifically, we 1) approximate the kernel in the DDEs (also called the memory function) by the probability density function of a mixed Erlang distribution and 2) use the linear chain trick (LCT) to transform the resulting DDEs into ODEs. Finally, the parameters in the kernel approximation are estimated as the solution to a dynamical least-squares problem, and we use a single-shooting approach to approximate this solution. We demonstrate the efficacy of the algorithm using numerical examples that involve the logistic equation and a point reactor kinetics model of a molten salt nuclear fission reactor.
Subjects: Dynamical Systems (math.DS); Systems and Control (eess.SY)
Cite as: arXiv:2405.07328 [math.DS]
  (or arXiv:2405.07328v1 [math.DS] for this version)
  https://doi.org/10.48550/arXiv.2405.07328
arXiv-issued DOI via DataCite

Submission history

From: Tobias K. S. Ritschel [view email]
[v1] Sun, 12 May 2024 16:37:49 UTC (735 KB)
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