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  5. Homotopy perturbation method for N/MEMS oscillators

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Article
English
2020

Homotopy perturbation method for N/MEMS oscillators

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English
2020
Mathematical Methods in the Applied Sciences
DOI: 10.1002/mma.6583

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Ji-huan He
Ji-huan He

Soochow University

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Naveed Anjum
Ji-huan He

Abstract

The nano/microelectromechanical systems (N/MEMS) have caught much attention in the past few decades for their attractive properties such as small size (low mass), high reliability (high thermal conductivity and high Young's modulus), batch fabrication, and low power consumption. The dynamic oscillatory behavior of these systems is very complex due to strong nonlinearities in these systems. The basic aim of this manuscript is to investigate the nonlinear vibration property of N/MEMS oscillators arising in nanotube‐based N/MEMS and resonators by the homotopy perturbation method coupled with Laplace transform (also called as He‐Laplace method in literature). A generalized N/MEMS oscillator is systematically studied, and a fairly accurate analytic solution is obtained. Three special cases for electrically actuated MEMS, multi‐walled carbon nanotubes‐based MEMS, and MEMS subjected to van der Waals attraction are considered for comparison, and a good agreement with exact solutions is observed.

How to cite this publication

Naveed Anjum, Ji-huan He (2020). Homotopy perturbation method for N/MEMS oscillators. Mathematical Methods in the Applied Sciences, DOI: 10.1002/mma.6583.

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Publication Details

Type

Article

Year

2020

Authors

2

Datasets

0

Total Files

0

Language

English

Journal

Mathematical Methods in the Applied Sciences

DOI

10.1002/mma.6583

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