时钟和触发器抖动。对超声光谱的影响

F. Stanke, R. D'Angelo
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引用次数: 5

摘要

数字化仪的采样抖动分为两种类型。触发抖动导致平均波形是均匀采样但随机移位波形的总和。时钟抖动引入随机移位到每个单独的样本。作者对两种抖动对功率谱和相位谱的偏差和标准差进行了分析预测,并与三种商用数字化仪的数值模拟和实验测量的标准差进行了比较。触发抖动对功率谱的影响小于时钟抖动。时钟抖动对通带边缘附近的相位谱的影响大于触发抖动,但对通带中心的影响较小。同步瞬态数字化比自由运行数字化产生更低的标准偏差
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clock and trigger jitter. Effects on ultrasonic spectroscopy
Two types of sampling jitter in digitizers are distinguished. Trigger jitter causes the average waveform to be a sum of uniformly sampled, but randomly shifted waveforms. Clock jitter introduces random shifts into each individual sample. The authors make analytic predictions of the biases and standard deviations due to both types of jitter on power and phase spectra, and compare these with numerical simulations and experimentally measured standard deviations from three commercial digitizers. Trigger jitter degrades power spectra less than clock jitter. Clock jitter degrades phase spectra near the edges of the passband more than trigger jitter, but less toward the center. Synchronous transient digitization yields lower standard deviations than free-running digitizers.<>
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