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A New Discrete Spectrum Correction Method for Ultra-Low Frequency Signals with Negative Frequency Contribution

机译:具有负频率贡献的超低频信号的离散频谱校正新方法

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摘要

The traditional analysis and correction method for discrete spectrum has greater error for the extreme frequency signal which widely existing in vibration engineering such as ultra low frequency signal, short time signal and ultra high frequency signal(close to the Nyquist frequency). In this paper we analyze the typical situation of extreme frequency signal and put forward a new discrete spectrum method based on accounting the influence of ultra low frequency. This method based on Blackman window sets up a discrete spectrum correction model involving the contribution of positive-negative frequency by utilizing the three spectral line near the local spectral peak. The frequency, amplitude and phase can be got by the solution of the model. The result coming from the simulation verification of the spectrum correction formula using frequency scanning indicates that this method efficiently lowers the influence of negative spectrum, and has higher precision for the frequency, amplitude and phase of the ultra low frequency.
机译:传统的离散频谱分析校正方法对振动工程中普遍存在的极低频信号,如超低频信号,短时信号和超高频信号(接近奈奎斯特频率),误差较大。本文分析了极低频信号的典型情况,并在考虑超低频影响的基础上提出了一种新的离散频谱方法。这种基于布莱克曼窗的方法通过利用局部频谱峰值附近的三个频谱线建立了一个包含正负频率贡献的离散频谱校正模型。频率,幅度和相位可以通过模型的解得到。使用频率扫描对频谱校正公式进行仿真验证的结果表明,该方法有效地降低了负频谱的影响,并且对超低频的频率,幅度和相位具有更高的精度。

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