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A New Method for Suppressing Periodic Narrowband Interference Based on the Chaotic van der Pol Oscillator

机译:基于混沌范德波尔振荡器的抑制周期性窄带干扰的新方法

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摘要

The chaotic van der Pol oscillator is a powerful tool for detecting defects in electric systems by using online partial discharge (PD) monitoring. This paper focuses on realizing weak PD signal detection in the strong periodic narrowband interference by using high sensitivity to the periodic narrowband interference signals and immunity to white noise and PD signals of chaotic systems. A new approach to removing the periodic narrowband interference by using a van der Pol chaotic oscillator is described by analyzing the motion characteristic of the chaotic oscillator on the basis of the van der Pol equation. Furthermore, the Floquet index for measuring the amplitude of periodic narrowband signals is redefined. The denoising signal processed by the chaotic van der Pol oscillators is further processed by wavelet analysis. Finally, the denoising results verify that the periodic narrowband and white noise interference can be removed efficiently by combining the theory of the chaotic van der Pol oscillator and wavelet analysis.
机译:范德波尔混沌振荡器是通过使用在线局部放电(PD)监视来检测电气系统中缺陷的强大工具。本文通过对周期性窄带干扰信号具有高灵敏度以及对混沌系统的白噪声和PD信号的免疫力,致力于在强周期性窄带干扰中实现弱PD信号检测。通过基于范德波尔方程分析混沌振荡器的运动特性,描述了一种利用范德波尔混沌振荡器消除周期性窄带干扰的新方法。此外,重新定义了用于测量周期性窄带信号幅度的Floquet指数。由混沌范德波尔振荡器处理的去噪信号通过小波分析进一步处理。最后,通过对混沌范德波尔振荡器原理和小波分析相结合,去噪结果验证了可以有效地消除周期性的窄带和白噪声干扰。

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