Analytical analysis for large-amplitude oscillation of a rotational pendulum system

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This paper deals with large amplitude oscillation of a nonlinear pendulum attached to a rotating structure. By coupling of the well-known Maclaurin series expansion and orthogonal Chebyshev polynomials, the governing differential equation with sinusoidal nonlinearity can be reduced to form a cubic-quintic Duffing equation. The resulting Duffing type temporal problem is solved by an analytic iteration approach. Two approximate formulas for the frequency (period) and the periodic solution are established for small as well as large amplitudes of motion. Illustrative examples are selected and compared to those analytical and exact solutions to substantiate the accuracy and correctness of the approximate analytical approach.

论文关键词:Chebyshev polynomials,Maclaurin series,Rotational pendulum system,Cubic-quintic Duffing equation

论文评审过程:Available online 30 December 2010.

论文官网地址:https://doi.org/10.1016/j.amc.2010.12.089