传感器脉冲信号延迟时间测量误差最小化

B. Vojnovic
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引用次数: 4

摘要

测量来自各种传感器(光学探测器、辐射探测器等)的脉冲信号的延迟时间(到达时间)在许多科学技术领域都有重要的应用。测量链包括以下几个部分:传感器(检测器)、传感器脉冲信号的电子前置放大器、信号处理电路和时序鉴别器。分析了脉冲幅度和上升时间变化、噪声效应和触发鉴频器的能量(电荷)灵敏度对三种类型鉴频器总体时序分辨率的影响。所有测量的最终目标是以最小的误差确定脉冲到达时间,这取决于信号参数以及鉴别器电路参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Error minimization of sensor pulse signal delay-time measurements
Measurement of delay-time (arrival-time) of pulse signals from various sensors (optical detectors, radiation detectors, etc.) have important applications in many scientific and technical fields. The measurement chain contains the following parts: sensor (detector), electronic preamplifier of pulse signal from sensor, signal processing circuits, and timing discriminator. We analyze the influence of pulse amplitude and rise-time variations, noise effects and energy (charge) sensitivity of discriminator triggering on the over-all timing resolution for three types of discriminator. The ultimate goal in all measurements is to determine pulse arrival-time with minimum error, which depends on signal parameters as well as on discriminator circuit parameters.
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