信号相位在无损检测计算机系统中的应用

IF 1 4区 工程技术 Q4 INSTRUMENTS & INSTRUMENTATION
Z. Mei, Y. Kuts, O. Kochan, I. Lysenko, O. Levchenko, H. Vlakh-Vyhrynovska
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引用次数: 1

摘要

测量物理量的相位方法和相位测量设备广泛应用于科学技术的各个领域。本文提出了一种基于离散希尔伯特变换(DHT)和确定性相结合的信号处理方法,以及相位测量的统计方法。这种方法可以在较宽的信噪比范围内更充分地利用测量信号相位的信息资源。它既可以用于计算机测量和测试系统,也可以用于测量数据的处理。考虑了DHT的好处。显示了使用方向数据的统计数据进行相位测量的可能性。提出了在相位测量中使用的循环统计量,如平均环值、循环方差和由此产生的向量长度。给出了在测量和无损检测中使用这种方法的一些例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using Signal Phase in Computerized Systems of Non-destructive Testing
Abstract Phase methods of measuring physical quantities and phase measuring equipment are widely used in various fields of science and technology. The article proposes a signal processing methodology based on a combination of the discrete Hilbert transform (DHT) and deterministic, as well as statistical methods of phase measurement. This methodology makes it possible to more fully use the information resource of the measuring signal phase in a wide range of the signal-to-noise ratio. It can be used both in computerized measurement and testing systems, as well as in the processing of measurement data. The benefits of the DHT are considered. The possibility of using statistics of directional data for phase measurements is shown. Circular statistics, such as the mean ring value, circular variance and the resulting vector length, were proposed for use in the phase measurements. Some examples of the use of this methodology in measurements and non-destructive testing are given.
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来源期刊
Measurement Science Review
Measurement Science Review INSTRUMENTS & INSTRUMENTATION-
CiteScore
2.00
自引率
11.10%
发文量
37
审稿时长
4.8 months
期刊介绍: - theory of measurement - mathematical processing of measured data - measurement uncertainty minimisation - statistical methods in data evaluation and modelling - measurement as an interdisciplinary activity - measurement science in education - medical imaging methods, image processing - biosignal measurement, processing and analysis - model based biomeasurements - neural networks in biomeasurement - telemeasurement in biomedicine - measurement in nanomedicine - measurement of basic physical quantities - magnetic and electric fields measurements - measurement of geometrical and mechanical quantities - optical measuring methods - electromagnetic compatibility - measurement in material science
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