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A study on multi-frequency patterns in nonlinear network oscillators using incremental harmonic balance method

机译:使用增量谐波平衡法的非线性网络振荡器多频图案研究

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This paper presents a study on multi-frequency pattern (MFP) vibration of nonlinear network systems based on the incremental harmonic balance (IHB) method. Instead of solving the considered highly-dimensional systems straightforwardly, the IHB method is proposed to solve a single-degree-of-freedom system with a time delay. The time delay is also incorporated into the iteration scheme, by introducing its relations with the phase lag and the angular frequency of limit cycle solutions. As the delay is adjusted to be in preset certain relations with the phase lag and the angular frequency, limit cycle solutions of the time-delayed system can be utilized to generate solutions of the original system. Two network systems are investigated to verify the proposed approach. The presented method can provide both stable and unstable limit cycles, and hence multiple solutions can be tracked successfully. Surprisingly, the coexistence of stable MFP is revealed in the van der Pol-type network oscillators. The attained results are useful for in-depth understanding of the mechanism of MFP. With such high efficiency and accuracy, moreover, the presented analysis method could be applicable in more nonlinear network systems.
机译:本文介绍了基于增量谐波平衡(IHB)方法的非线性网络系统多频图案(MFP)振动的研究。提出了IHB方法,而不是求解所考虑的高度维度系统,以解决具有时间延迟的单级自由度系统。通过与相位滞后的关系和极限循环解决方案的角频率引入其关系,将时间延迟结合到迭代方案中。随着延迟调整为预设与相位滞后的某些关系和角频率,可以利用时间延迟系统的限制循环解决方案来生成原始系统的解决方案。调查了两个网络系统以验证所提出的方法。所提出的方法可以提供稳定和不稳定的极限循环,因此可以成功跟踪多种解决方案。令人惊讶的是,在van der Pol型网络振荡器中揭示了稳定MFP的共存。达到的结果对于对MFP机制的深入理解有用。此外,具有如此高的效率和准确性,所提出的分析方法可以适用于更多非线性网络系统。

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