一类新的加权函数,可在采样数据处理器上使用

G. Ripamonti, A. Castoldi, R. Spigarolo, E. Gatti
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引用次数: 2

摘要

通过使用模拟预滤波器和采样数据处理器,可以很容易地实现一整类加权函数。它们的主要特点是持续时间有限;另一个有趣的特性是处理脉冲所需的样本数量很少。精度优于1%的平顶也可以实现。讨论了这些过滤器的可能实现,重点讨论了不准确的原因。特别地,这些滤波器是时变的。因此,同步问题得到了发展并进行了深入讨论。在混合模拟实现中,应特别注意a /D转换器:推导出对其特性的要求。相反,一旦脉冲被采样和数字化,延迟线的实现是直接的,因为它可以通过排列的存储元件获得,例如,在移位寄存器中。速度和质量不断提高的模拟到数字转换器的可用性也使得用数字技术获得延迟线整形器成为可能。事实上,已经报道了一种基于开关电容滤波器的处理器,适合于CERN的LHC实验[2]。在本文中,我们研究了数字滤波器应该满足的条件,以便在选择特定的模拟预滤波器后获得保持脉冲响应有限持续时间的信号整形。众所周知的延迟线、双延迟线整形器以及[2]中描述的整形器作为特殊情况得到。本文还讨论了由于滤波器的非理想性而产生的一些影响,并讨论了同步问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Class Of Weighting Functions Readily Available With Sampled Data Processors
By using an analog prefilter and a sampled data processor, it is possible to easily implement an entire class of weighting functions. Their main feature is a finite time duration; an additional interesting property is the small number of samples needed to process a pulse. Flat tops witlun better than 1% accuracy can also be achieved. Possible implementations of these filters are discussed with emphasis on causes of inaccuracy. In particular, these filters come out to be time-variant. Synchronization issues are therefore developed and thoroughly discussed. In a mixed analogdigtal implementation, particular regard should be gven to the A/D converter: the requirements on its characteristics are derived. On the contrary, once a pulse is sampled and digitized, the realization of a delay line is straightforward, since it can be obtained with memory elements arranged, e.g., in a shift regrster. The availability of analog to Qgital converters of ever increasing speed and quality makes it also possible to conceive Delay Line shapers obtained with Qgital techniques. In fact, one processor based on switched capacitor filters has been reported, suitable for the LHC experiment at CERN [2]. In this paper, we examine the conditions that the digital filter should fulfill in order to obtain a signal shaping that retains a finite duration of the impulse response once a particular analog prefilter is chosen. The well known Delay Line, Double Delay Line shapers as well as those shapers described in [2] are obtained as particular cases. Some effects due to the non idealities of the filters are also dealt with, together with a discussion of synchronization issues.
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