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Fundamentals and waveform digitizer for non-uniformly sampled very fast burst-like signals

机译:基本原理和波形数字化仪,用于非均匀采样的非常快的突发信号

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This is a paper describing theories and applications of digital spectrum analysis technique for nonuniformly sampled very fast burst like signals. The difficulty in sampling this kind of signals lies in the fact that the length of the signal is shorter than the affordable sampling time of current measuring instrumentation. The majority of the digital signal processing theories for nonuniformly sampled signals developed so far has always assumed random equivalent time sampling (or periodic nonuniform sampling) on signals with length much longer than the affordable sampling time [1–4, 10–14]. However, in practice, very fast burst-like signals occur in much scientific instrumentation [5] and new digital spectrum analysis technique for nonuniformly sampled signals of this class is in demand. In this paper, we first derive a digital spectral representation of a nonuniformly sampled very fast burst-like signal, and then present a detailed spectrum analysis of a nonuniformly sampled sinusoid cycle. It is found that DFT of a nonuniformly sampled very fast burst-like signal can be represented in terms of the DFT of sampled data sequence obtained by sampling the signal at uniform rate. The signal-to-noise ratio of the sampling results is discussed. We then introduced a practical high-speed waveform digitizer for very fast burst-like signal, and indicated the theory developed in this paper can be applied to analyze the errors caused by timing jitter. Specifically, we analyze waveform digitizers which utilize delay line techniques to extend their capabilities with the current monolithic A/D converter technology. Theoretical results are confirmed by the simulation results with a very fast burst-like signal.
机译:这是一种描述数字频谱分析技术的纸张,用于类似于信号的非均匀采样的非常快速爆破的理论和应用。采样这种信号的困难在于,信号的长度短于电流测量仪器的实惠采样时间短。到目前为止开发的非均匀采样信号的数字信号处理理论的大部分始终假设随机等效时间采样(或周期性的非均匀采样),其长度长度长度比实惠采样时间[1-4,10-14]。然而,在实践中,非常快的突发信号发生在很多科学仪器[5]和新的数字频谱分析技术中,这类不均匀的采样信号是有需求的。在本文中,我们首先导出了非均匀采样的非常快速突发的信号的数字光谱表示,然后呈现了非均匀采样的正弦循环的详细光谱分析。发现,通过以均匀速率采样信号获得的采样数据序列的DFT,可以表示不均匀的非常快速突发样信号的DFT。讨论了采样结果的信噪比。然后,我们引入了一个实用的高速波形数字转换器,用于非常快速的突发信号,并表明本文开发的理论可以应用于分析由时序抖动引起的错误。具体而言,我们分析利用延迟线技术的波形数字,以利用当前整体式A / D转换器技术扩展其能力。通过仿真结果确认理论结果,具有非常快速的突发信号。

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