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2024 | OriginalPaper | Buchkapitel

Automated Harmonic Signal Removal-Based Image Feature Extraction Technique: A Comparative Study Using Online Databases

verfasst von : Muhammad Danial Abu Hasan, Syahril Ramadhan Saufi, M. Firdaus Isham, Shaharil Mad Saad, W. Aliff A. Saad, Zair Asrar Bin Ahmad, Mohd Salman Leong, Mat Hussin Ab Talib, Lim Meng Hee, M. Haffizzi Md. Idris

Erschienen in: Intelligent Manufacturing and Mechatronics

Verlag: Springer Nature Singapore

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Abstract

This paper presents an automated harmonic removal technique as an efficient method for identifying and removing the influence of harmonics from the output signal. The method involves disregarding user-defined parameters during system initialization and reconstructing the output signal automatically so that it can be used for system identification. While stochastic subspace-based algorithms (SSI) are generally reliable for modal parameter estimation, applying them to structures with rotating machinery and harmonic excitations presents challenges. Because the SSI method necessitates designating parameters, such as the maximal within-cluster distance, at the outset of each dataset analysis, the issue remains unresolved. In addition to modal identification, the current research concentrates on image-based feature extraction for aggregating and classifying harmonic components and structural poles directly from a stabilization diagram. Utilizing online data sets to validate the algorithm’s efficacy. Using a comparative analysis, the proposed method is compared to existing techniques, namely orthogonal projection-based harmonic signal removal and smoothing techniques based on linear interpolation. The results indicate that the proposed algorithm estimates modal parameters precisely and consistently both before and after the removal of harmonic components from the response signal.

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Metadaten
Titel
Automated Harmonic Signal Removal-Based Image Feature Extraction Technique: A Comparative Study Using Online Databases
verfasst von
Muhammad Danial Abu Hasan
Syahril Ramadhan Saufi
M. Firdaus Isham
Shaharil Mad Saad
W. Aliff A. Saad
Zair Asrar Bin Ahmad
Mohd Salman Leong
Mat Hussin Ab Talib
Lim Meng Hee
M. Haffizzi Md. Idris
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-8819-8_17

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