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Determining figures of merit from analog-to-digital converter output spectra

机译:从模数转换器输出频谱确定品质因数

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Evaluation of the spectrum obtained from recorded output data after periodic, often sinusoidal excitation is a common method for gaining information on the dynamic performance of an analog--to-digital converter (ADC) under test. If all frequency components of the recorded data set have been sampled coherently, i.e., there is an integer number of periods in the sample, analysis of the recorded spectrum is comparatively straightforward. If coherent sampling is not possible, leakage in the spectrum occurs, the short--range pall of which cannot be reduced by time-domain windowing. Period extraction and hybrid spectrum computation can be used to obtain low-leakage or even virtually leakage-free spectra from an incoherently recorded data set. Reliable information about the contents of both coherently and incoherently sampled data is provided by detailed line-oriented spectrum analysis, which is even possible if a certain amount of leakage is present in the spectrum. This analysis consists of line detection, line delimitation, splitting of spectral values and calculation of the individual power contents.
机译:定期(通常为正弦波)激励后,对从记录的输出数据中获得的频谱进行评估是获得有关被测模数转换器(ADC)动态性能信息的常用方法。如果已对记录数据集的所有频率分量进行了相干采样,即样本中的周期数为整数,则对记录频谱的分析将相对简单。如果不可能进行相干采样,则会发生频谱泄漏,无法通过时域窗口化来减小其短距离范围。周期提取和混合频谱计算可用于从非相干记录的数据集中获得低泄漏甚至几乎无泄漏的光谱。通过详细的面向行的频谱分析,可以提供有关相干和非相干采样数据内容的可靠信息,即使频谱中存在一定量的泄漏,这也是可能的。此分析包括线路检测,线路定界,频谱值划分和各个功率含量的计算。

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