过程监控系统的信号分解

Processes Pub Date : 2024-06-09 DOI:10.3390/pr12061188
I. Pavlenko, Justyna Trojanowska, V. Ivanov, Svetlana Radchenko, J. Husár, J. Mižáková
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引用次数: 0

摘要

本文专门讨论将信号分解为周期分量和非周期分量的问题。根据所提出的方法,无需将非周期性分量作为其周期性分量的总信号之差进行评估。这项研究旨在创建一种通用的分析方法,将傅里叶级数和麦克劳林级数方法结合成一个单一的综合级数。因此,为具有单谐叠加的非周期信号建立了确定沉积系数的分析表达式。还建立了递推关系,以确定该序列的系数。通过这些关系,可以避免直接对获得的积分值进行积分。系数的评估数值也以图形和表格形式呈现。事实证明,这些系数的数值是通用数字,因为它们与振荡的周期/频率无关。在周期信号的情况下,评估系数等于傅里叶级数系数,这一事实证实了所提议方法的可靠性。此外,对于非周期性信号,这些系数也被简化为 Maclaurin 序列系数。所提出的信号分解通用分析方法适用于过程控制和监测系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Signal Decomposition for Monitoring Systems of Processes
This article is devoted to the problem of signal decomposition into periodic and aperiodic components. According to the proposed approach, there is no need to evaluate the aperiodic component as a difference between the total signal of its periodic components. This research aims to create a general analytical approach that combines the Fourier and Maclaurin series methodologies into a single comprehensive series. As a result, analytical expressions for determining deposition coefficients were established for an aperiodic signal with a monoharmonic overlay. Recurrence relations were established to determine the coefficients of this series. These relations allow direct integrations of the obtained values of integrals to be avoided. The evaluated numerical values of the coefficients are also presented graphically and tabulated. It was proven that the values of these coefficients are universal numbers since they do not depend on the period/frequency of oscillations. The reliability of the proposed approach was confirmed by the fact that the evaluated coefficients are equal to the Fourier series coefficients in the case of a periodic signal. Also, for an aperiodic signal, these coefficients were reduced to the coefficients of the Maclaurin series. The usability of the proposed generalized analytical approach for signal decomposition is for control and monitoring systems of processes.
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