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Frequency spectrum analysis for spectrum stabilization in airborne gamma-ray spectrometer

机译:机载伽马射线谱仪中用于频谱稳定化的频谱分析

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Abnormal multi-crystal spectral drifts often can be observed when power on the airborne gamma-ray spectrometer. Currently, these spectral drifts of each crystal are generally eliminated through manual adjustment, which is time-consuming and labor-ineffective. To realize this quick automatic spectrum stabilization of multi-crystal, a frequency spectrum analysis method for natural gamma-ray background spectrum is put forward in this paper to replace traditional spectrum stabilization method used characteristic peak. Based on the polynomial fitting of high harmonics in frequency spectrum and gamma-ray spectral drift, it calculates overall spectral drift of natural gamma-ray spectrum and adjusts the gain of spectrometer by this spectral drift value, thus completing quick spectrum stabilization in the power on stage of spectrometer. This method requires no manual intervention and can obtain the overall spectral drift value automatically under no time-domain pre-processing to the natural gamma-ray spectra. The spectral drift value calculated by this method has an absolute error less than five channels (1024 resolution) and a relative error smaller than 0.80%, which can satisfy the quick automatic spectrum stabilization requirement when power on the airborne gamma-ray spectrometer instead of manual operation.
机译:接通机载伽马射线光谱仪的电源时,经常会观察到异常的多晶光谱漂移。当前,通常通过手动调整消除每个晶体的这些光谱漂移,这既费时又费力。为了实现这种快速的多晶体自动光谱稳定化,提出了一种天然伽马射线背景光谱的频谱分析方法,以代替传统的利用特征峰的光谱稳定化方法。基于频谱中高次谐波的多项式拟合和伽马射线频谱漂移,它可以计算自然伽马射线频谱的整体频谱漂移,并通过该频谱漂移值来调整光谱仪的增益,从而在开机时实现快速频谱稳定光谱仪的阶段。该方法不需要人工干预,并且可以在不对自然伽马射线光谱进行时域预处理的情况下自动获得总光谱漂移值。通过这种方法计算出的光谱漂移值的绝对误差小于5个通道(1024分辨率),相对误差小于0.80%,可以满足在机载伽玛射线光谱仪上电代替手动加电时快速自动光谱稳定的要求。操作。

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