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首页> 外文期刊>Journal of Sound and Vibration >Dynamics and synchronization of coupled self-sustained electromechanical devices
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Dynamics and synchronization of coupled self-sustained electromechanical devices

机译:耦合的自持式机电设备的动力学和同步

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The dynamics and synchronization of two coupled self-excited devices are considered. The stability and duration of the synchronization process between two coupled self-sustained electrical oscillators described by the Rayleigh-Duffing oscillator are first analyzed. The properties of the Hill equation and the Whittaker method are used to derive the stability conditions of the synchronization process. Secondly, the averaging method is used to find the amplitudes of the oscillatory states of the self-sustained electromechanical device, consisting of an electrical Rayleigh-Duffing oscillator coupled magnetically to a linear mechanical oscillator. The synchronization of two such coupled devices is discussed and the stability boundaries of the synchronization process are derived using the Floquet theory and the Hill's determinant. Good agreement is obtained between the analytical and numerical results. (c) 2004 Elsevier Ltd. All rights reserved.
机译:考虑了两个耦合的自激设备的动态和同步。首先分析了瑞利-达芬振荡器描述的两个耦合的自持式电振荡器之间同步过程的稳定性和持续时间。使用希尔方程和Whittaker方法的性质来导出同步过程的稳定性条件。其次,使用平均方法来找到自持式机电设备的振荡状态的幅度,该机电设备由电磁耦合到线性机械振荡器的电瑞利-达芬振荡器组成。讨论了两个这样的耦合设备的同步,并使用Floquet理论和Hill的行列式推导了同步过程的稳定性边界。分析结果和数值结果之间取得了很好的一致性。 (c)2004 Elsevier Ltd.保留所有权利。

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