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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Digital-sampling systems in high-resolution and wide dynamic-range energy measurements: Comparison with peak sensing ADCs
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Digital-sampling systems in high-resolution and wide dynamic-range energy measurements: Comparison with peak sensing ADCs

机译:高分辨率和宽动态范围能量测量中的数字采样系统:与峰值感应ADC的比较

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摘要

The use of fast digital sampling techniques in Nuclear Physics experiments as a replacement of the standard analog signal processing methods is discussed for applications needing high-resolution signal amplitude measurements. This is for example the case of a solid-state detector with a charge-sensitive preamplifier, processed using fast digital sampling methods. Under very general assumptions, an expression for the achievable resolution and dynamic range of the system is reported, valid for any detector/digitizer/digital-filter combination, taking into account the detector noise and the ADC properties, namely the Effective Number of Bits (ENOB) and the sampling frequency. The system properties are summarized using the parameter PSENOB, i.e. the "Peak-Sensing-Equivalent Number of Bits". These results can be used to predict the attainable performances in various applications, possibly requiring a resolution/dynamic-range trade-off. Numerical examples for some representative cases in gamma-ray spectroscopy and charged particle experiments are reported, demonstrating that the equivalent performances of a 15 bit peak-sensing ADC are feasible with today-available sampling ADCs. For ease of presentation, other non-trivial effects as baseline- and non-linearity-related issues as well as experimental tests of the proposed approach are presented in a companion paper [L. Bardelli, G. Poggi, Digital sampling-systems in high-resolution and wide dynamic-range energy measurements: finite time window, baseline effects, and experimental tests, this issue]. (c) 2006 Elsevier B.V. All rights reserved.
机译:对于需要高分辨率信号幅度测量的应用,讨论了在核物理实验中使用快速数字采样技术替代标准模拟信号处理方法。例如,使用快速数字采样方法处理的带有电荷敏感型前置放大器的固态检测器就是这种情况。在非常笼统的假设下,报告了系统可实现的分辨率和动态范围的表达式,该表达式对于任何检测器/数字转换器/数字滤波器组合均有效,同时考虑了检测器噪声和ADC属性,即有效位数( ENOB)和采样频率。使用参数PSENOB总结系统属性,即“峰值感知等效位数”。这些结果可用于预测在各种应用中可获得的性能,可能需要分辨率/动态范围的权衡。报告了一些典型案例的伽玛射线能谱和带电粒子实验中的数值示例,表明与当今可用的采样ADC相比,15位峰值感应ADC的等效性能是可行的。为了便于表述,其他与基准和非线性相关的问题,以及建议方法的实验测试,均在随附的论文中提出[L. Bardelli,G。Poggi,高分辨率和宽动态范围能量测量中的数字采样系统:有限的时间窗,基线效应和实验测试,本期]。 (c)2006 Elsevier B.V.保留所有权利。

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