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Correlation based novel technique for real time oscilloscope triggering for complex waveforms

机译:基于相关性的实时示波器触发复杂波形的新技术

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摘要

Frequency modulated signals being dynamic in nature changes their frequency with time. These signals are commonly used in sonar and radar applications, but also have other applications such as stimulus response analysis, vibration sweep testing and spread spectrum communications. Data acquisition and presentation of these periodic signals offer the challenge of live waveform presentation on oscilloscope. This paper presents an efficient technique for advanced oscilloscope triggering for periodic waveforms based on the concept of normalized correlation. The proposed technique is demonstrated using LabVIEW based intensive simulations on several test waveforms. Hardware implementation of the proposed technique is successfully demonstrated with the help of data acquisition (DAQ) card. This intelligence can be embodied into the digital storage oscilloscope (DSO), making it an intelligent measurement system, catering to wide variety of the waveform types. The proposed technique, simulation results, robustness study, comparison with other similar methods and implementation results are presented in this paper.
机译:本质上是动态的调频信号随时间改变其频率。这些信号通常用于声纳和雷达应用,但也具有其他应用,例如刺激响应分析,振动扫描测试和扩频通信。这些周期性信号的数据采集和呈现带来了在示波器上实时波形呈现的挑战。本文基于归一化相关性的概念,提出了一种用于高级示波器触发周期波形的有效技术。使用基于LabVIEW的对多个测试波形的密集仿真对所提出的技术进行了演示。借助数据采集(DAQ)卡成功演示了所提出技术的硬件实现。这种智能可以体现在数字存储示波器(DSO)中,使其成为一种智能的测量系统,可以适应各种波形类型。本文介绍了所提出的技术,仿真结果,鲁棒性研究,与其他类似方法的比较以及实现结果。

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