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  4. Damping efficiency of the fractional Duffing system and an assessment of its solution accuracy

Publication details

Type
Description research data
Authors / Creators
Sedlmayr, Martyna  

Rysak, Andrzej  
Date
2025-07-28
Deposit location
Zenodo
Deposit location URL
https://zenodo.org/records/16543739
DOI
10.5281/zenodo.16543738

Abstracts and keywords

Abstract (EN)

Dynamical systems with high damping efficiency in a wide frequency band can be useful on a small scale – for harvesting energy from ambient vibrations, and on a large scale – for damping harmful vibrations of mechanical structures. This repository contains datasets for assessment of the quality of solutions and damping efficiency of systems with fractional order derivatives. To simulate the fractional system the fourth-order Runge–Kutta method and Grünwald–Letnikov methods are used. We propose a coefficient for assessing the quality of solutions to fractional systems by reference to the quality of the calculated energy balance. As an exemplary system we study the Duffing model with embedded additional fractional-order derivative terms. Based on this coefficient, intervals of key numerical simulation parameters are determined to ensure the appropriate quality for the calculations of energy flows and energy balance. The determined values of these parameters are then used in tests of the damping efficiency of the studied system. Our results show that by modifying the fractional terms it is possible to configure a system that exhibits a ‘‘broadband effect’’, i.e. a system that is characterized by high-amplitude vibrations and, consequently, high energy efficiency in a wide range of excitation frequencies. Datasets in DAT and MAT files (Matalb formats) contain the source data presented in the figures in the article mentioned in the related work.

Keywords EN
energy balance
fractional duffing system
fractional order differential equation
accuracy of the dynamical system solution
Broadband effect
Grünwald–Letnikov method

Additional information

Related publications
https://www.sciencedirect.com/science/article/pii/S0022460X24004528?via%3Dihub

Project information

Project description
SHENG-2
Project identifier
2021/40/Q/ST8/00362
Funding Institution
National Science Center
Sedlmayr, M., & Rysak, A. (2025). Damping efficiency of the fractional Duffing system and an assessment of its solution accuracy (, Ed.) [Data set]. https://doi.org/10.5281/zenodo.16543738
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