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Elliptic Harmonic Balance Method For Two Degree-of-freedom Self-excited Oscillators

机译:两自由度自激振荡器的椭圆谐波平衡方法

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摘要

Elliptic harmonic balance (EHB) method as an analytical method is widely used for strongly non-linear oscillators with a single degree-of-freedom (DOF). The oscillation equations are expressed by elliptic functions, and then the expressions are expanded as harmonics of elliptic type while only the first harmonic is retained. To the best of our knowledge, however, it seems that the EHB method has not been found applications in two or multiple DOFs systems. One possible reason is that the EHB method may cause a difficult problem that the number of equations obtained by harmonic balancing is not equal to that of unknowns. To this end, in the present paper, the EHB method is therefore extended to study a class of strongly self-excited oscillators with two DOFs. Prior to harmonic balancing, an additional equation is established to tackle the aforementioned problem. Illustrative examples show that solutions of limit cycles obtained by the proposed method are in good agreement with the numerical solutions.
机译:椭圆谐波平衡(EHB)方法作为一种分析方法已广泛用于具有单自由度(DOF)的强非线性振荡器。振荡方程式由椭圆函数表示,然后将表达式扩展为椭圆型谐波,而仅保留一次谐波。据我们所知,似乎没有发现EHB方法在两个或多个自由度系统中的应用。一种可能的原因是,EHB方法可能会引起一个难题,即通过谐波平衡获得的方程数量不等于未知数。为此,本文将EHB方法扩展到研究一类具有两个自由度的强自激振荡器。在谐波平衡之前,需要建立一个附加方程来解决上述问题。算例表明,该方法获得的极限环解与数值解吻合良好。

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