首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Correlation techniques for the improvement of signal-to-noise ratio in measurements with stochastic processes
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Correlation techniques for the improvement of signal-to-noise ratio in measurements with stochastic processes

机译:用于在随机过程中提高信噪比的相关技术

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An AC modulation technique is described to convert stochastic signal variations into an amplitude variation and its retrieval through Fourier analysis. It is shown that this AC detection of signals of stochastic processes when processed through auto- and cross-correlation techniques improve the signal-to-noise ratio; the correlation techniques serve a similar purpose of frequency and phase filtering as that of phase-sensitive detection. A few model calculations applied to nuclear spectroscopy measurements such as Angular Correlations, Mossbauer spectroscopy and Pulse Height Analysis reveal considerable improvement in the sensitivity of signal detection. Experimental implementation of the technique is presented in terms of amplitude variations of harmonics representing the derivatives of normal spectra. Improved detection sensitivity to spectral variations is shown to be significant. These correlation techniques are general and can be made applicable to all the fields of particle counting where measurements are amenable to "dual modulation". The proposed AC modulation technique may be applied in diverse fields like pulse height analysis in nuclear spectroscopy, XRD, XRF, RBS, ESCA, positronium resonance, photon counting etc., for enhancing the SIN ratio. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 25]
机译:描述了一种交流调制技术,用于将随机信号变化转换为幅度变化,并通过傅立叶分析进行检索。结果表明,这种通过随机和互相关技术处理随机过程信号的交流检测可以提高信噪比。相关技术与相位敏感检测的目的类似,可用于频率和相位滤波。应用于核能谱测量的一些模型计算(例如角度相关性,Mossbauer谱和脉冲高度分析)显示出信号检测灵敏度的显着提高。根据代表正态谱导数的谐波幅度变化来介绍该技术的实验实现。已显示出对光谱变化的改进的检测灵敏度是显着的。这些相关技术是通用的,可以使它们适用于所有粒子计数领域,在这些领域中,测量适合“双重调制”。所提出的交流调制技术可应用于多种领域,例如核光谱中的脉冲高度分析,XRD,XRF,RBS,ESCA,正电子共振,光子计数等,以提高SIN比。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:25]

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