首页> 外文会议>56th ARFTG(Automatic RF Techniques Group) Conference Digest, Nov 30-Dec 1, 2000, Boulder, Colorado >Finite Aperture Time and Sampling Jitter Effects in Wideband Data Acquisition Systems
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Finite Aperture Time and Sampling Jitter Effects in Wideband Data Acquisition Systems

机译:宽带数据采集系统中的有限孔径时间和采样抖动效应

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This paper presents explicit analysis of the output error power in wideband sampling systems in the presence of finite aperture time and sampling jitter. Finite aperture time and sampling jitter are crucial for wideband sampling systems to capture high-frequency signals in high precision. Finite aperture time (or finite aperture window) works as a low pass filter and hence it degrades the high-frequency performance of sampling systems while aperture jitter misleads data acquisition timing points, which causes large errors for high-frequency (and hence large slew rate) signal acquisition. In this paper, we discuss their effects explicitly in case that not only finite aperture time and sampling jitter exist individually but also they exist together for almost any aperture window function with jitter of Gaussian distribution. These results are theoretically fundamental, and are useful for designing wideband sampling data acquisition systems. Experimental measurements are being performed to verify our theoretical results and these may be also reported at the conference.
机译:本文对存在有限孔径时间和采样抖动的宽带采样系统中的输出误差功率进行了显式分析。有限的孔径时间和采样抖动对于宽带采样系统以高精度捕获高频信号至关重要。有限的光圈时间(或有限的光圈窗口)用作低通滤波器,因此会降低采样系统的高频性能,而光圈抖动会误导数据采集时序点,从而对高频产生较大误差(并因此导致较大的摆率) )信号采集。在本文中,我们将明确讨论它们的影响,这种情况下,不仅有限的孔径时间和采样抖动会单独存在,而且对于几乎所有具有高斯分布抖动的孔径窗口函数,它们都会同时存在。这些结果在理论上是基础,对于设计宽带采样数据采集系统很有用。正在进行实验测量以验证我们的理论结果,这些结果也可能会在会议上报告。

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