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A high precision spectrum rectifying technique

机译:高精度频谱校正技术

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摘要

Spectrum-analysis technology has been widely used in engineering. Round discrete spectrum or FFT spectrum of a signal can be obtained rapidly by the FFT method. In practical applications, these FFT spectrums always need to be rectified in order to obtain a better spectrum. A high precision spectrum rectifying technique, a deconvolution-based spectrum rectifying technique, is developed in this paper. The sampled signal is firstly multiplied by an adaptive window function, the zooming spectrum of discrete windowed signal is then calculated, and finally the spectrum of window function is eliminated from the zooming spectrum by deconvolution so that the rectified spectrum of the analyzed signal can be obtained. Experiments show that this rectifying technique is very effective.
机译:频谱分析技术已在工程中广泛使用。可以通过FFT方法快速获得信号的圆形离散频谱或FFT频谱。在实际应用中,始终需要对这些FFT频谱进行校正,以获得更好的频谱。本文开发了一种高精度的光谱校正技术,即一种基于反卷积的光谱校正技术。首先将采样信号乘以自适应窗函数,然后计算离散窗信号的缩放谱,最后通过反卷积从缩放谱中消除窗函数的谱,从而获得分析信号的整流谱。 。实验表明,该整流技术非常有效。

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