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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Baseline restoration method based on mathematical morphology for high-pressure xenon detectors
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Baseline restoration method based on mathematical morphology for high-pressure xenon detectors

机译:基于数学形态学的高压氙探测器基线恢复方法

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摘要

The shift of baseline has always existed in high-pressure xenon (HPXe) detectors because of the influence of external acoustic noise. This problem seriously influences the spectrometric characteristics of these detectors. A special baseline restoration method is required to remove the shift of baseline in real time. This study demonstrated that the top hat transform based on mathematical morphology can restrain the shift of baseline in digital multichannel analyzer. An improved baseline restoration (IBLR) method based on mathematical morphology was proposed and implemented in field programmable gate array (FPGA) to obtain superior baseline restoration. The structuring element of the IBLR method can be adjusted automatically in real time according to the characteristics of the baseline. Experimental results show that the IBLR method can maintain an excellent energy resolution over a wide shift range of baseline. To strengthen our conclusion, we carried out an external acoustic noise experiment on a HPXe detector. The HPXe detector with IBLR was virtually unaffected by external acoustic noise.
机译:由于外部声噪声的影响,高压氙(HPXe)检测器中始终存在基线偏移。这个问题严重影响了这些探测器的光谱特性。需要一种特殊的基线恢复方法来实时消除基线偏移。这项研究表明,基于数学形态学的高顶礼帽变换可以抑制数字多通道分析仪中基线的移动。提出了一种基于数学形态学的改进的基线恢复(IBLR)方法,并将其实施在现场可编程门阵列(FPGA)中,以获得更好的基线恢复。 IBLR方法的结构元素可以根据基线的特征自动进行实时调整。实验结果表明,IBLR方法可以在较宽的基线偏移范围内保持出色的能量分辨率。为加强我们的结论,我们在HPXe检测器上进行了外部噪声实验。带有IBLR的HPXe检测器几乎不受外部噪声的影响。

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