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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Analysis of sampling and noise error on the energy measurement of direct digitally acquired pulsed signals
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Analysis of sampling and noise error on the energy measurement of direct digitally acquired pulsed signals

机译:直接数字获取脉冲信号的能量测量上的采样和噪声误差分析

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The precise measurement of the energy content of a pulse signal, limited in time and bandwidth, is of great interest in many applications, and can be achieved by direct digitization of the analog signal, followed by calculation of the mean squared amplitude of the data samples. The beam position measurement in a particle accelerator is among the applications, and this technique is proposed for the next generation of read-out electronics for the beam position monitors of the CERN Large Hadron Collider. The analog-to-digital converter is a key component of the signal processing chain, and defines the performance of the measurement through its characteristics and features, in particular the maximum sampling rate and the effective number of bits. This paper analyzes the error on the measurement of the signal energy for a specific pulse waveform within a given time window, caused by the analog-to-digital converter sampling effects due to the finite, unsynchronized sampling rate. In a following step the result is combined with the effect of a noisy analog-to-digital converter of finite resolution. This gives a general expression for the signal-to-noise ratio, which can be used to find the optimal trade-off between sampling rate and resolution of an analog-to-digital converter for any given single pulse waveform.
机译:精确测量脉冲信号的能量含量,时间和带宽的限制,对许多应用具有很大的兴趣,并且可以通过模拟信号的直接数字化来实现,然后计算数据样本的平均平方幅度。粒子加速器中的光束位置测量是应用中,提出了该技术,用于下一代用于Cern大型强子撞机的光束位置监视器的下一代读出电子器件。模数转换器是信号处理链的关键组件,并通过其特性和特征来定义测量的性能,特别是最大采样率和有效位数。本文分析了在给定时间窗口内的特定脉冲波形测量的误差,由模数转换器采样效果引起的,由于有限,不同步的采样率导致的模数转换器采样效果。在下一步中,结果与有限分辨率的噪声模数转换器的效果相结合。这给出了信噪比的一般表达式,该信噪比可以用于找到用于任何给定的单脉冲波形的模拟转换器的采样率和分辨率之间的最佳折衷。

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