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An efficient and novel technique for solving continuously variable fractional order mass-spring-damping system

机译:解决连续可变分数阶质量-弹簧-阻尼系统的高效新颖技术

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Purpose - In this paper, the formulation and analytic solutions for fractional continuously variable order dynamic models, namely, fractional continuously mass-spring damper (continuously variable fractional order) systems, have been presented. The authors will demonstrate via two cases where the frictional damping given by fractional derivative, the order of which varies continuously - while the mass moves in a guide. Here, the continuously changing nature of the fractional-order derivative for dynamic systems has been studied for the first time. The solutions of the fractional continuously variable order mass-spring damper systems have been presented here by using a successive recursive method, and the closed form of the solutions has been obtained. By using graphical plots, the nature of the solutions has been discussed for the different cases of continuously variable fractional order of damping force for oscillator. The purpose of the paper is to formulate the continuously variable ordermass-spring damper systems and find their analytical solutions by successive recursion method.
机译:目的-在本文中,提出了分数连续可变阶动力学模型即分数连续质量弹簧阻尼器(连续可变分数阶)系统的公式和解析解。作者将通过两种情况说明分数导数给出的摩擦阻尼,其阶次连续变化-当质量在导轨中移动时。在此,首次研究了动态系统分数阶导数的连续变化性质。分数连续可变阶质量弹簧阻尼器系统的解在这里已经通过使用连续递归方法给出,并且已经获得了解的封闭形式。通过使用图形图,已经讨论了针对阻尼器的阻尼力连续可变分数阶的不同情况的解决方案的性质。本文的目的是建立连续可变的阶次弹簧-阻尼器系统,并通过逐次递推法找到其解析解。

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