The Investigation On Defect Recognition System Using Gaussian Smoothing And Template Matching Approach

Harun, Mohamad Haniff and Yaakub, Muhamad Faizal and Zainal Abidin, Amar Faiz and Azahar, Arman Hadi and Mohd Aras, Mohd Shahrieel and Nor Shah, Mohd Badril and Md Basar, Mohd Farriz (2020) The Investigation On Defect Recognition System Using Gaussian Smoothing And Template Matching Approach. Indonesian Journal of Electrical Engineering and Computer Science, 18 (2). pp. 812-820. ISSN 2502-4752

[img] Text
THE INVESTIGATION ON DEFECT RECOGNITION SYSTEM USING GAUSSIAN SMOOTHING AND TEMPLATE MATCHING APPROACH.PDF

Download (509kB)

Abstract

This paper investigates various approaches for automated inspection of gluing process using shape-based matching application. A new supervised defect detection approach to detect a class of defects in gluing application is proposed. Creating of region of interest in important region of object is discussed. Gaussian smoothing features is proposed in determining better image processing. Template matching in differentiates between reference and tested image are proposed. This scheme provides high computational savings and results in high defect detection recognition rate. The defects are broadly classified into three classes: 1) gap defect; 2) bumper defect; 3) bubble defect. This system does lessen execution time, yet additionally produce high precision in deformity location rate. It is discovered that the proposed framework can give precision at 95.77% recognition rate in recognizing imperfection for gluing application.

Item Type: Article
Uncontrolled Keywords: Gaussian smoothing, Gluing process, Region of interest, Shape-based matching, Template matching, Recognition System
Divisions: Faculty of Electrical and Electronic Engineering Technology
Depositing User: Sabariah Ismail
Date Deposited: 09 Dec 2020 15:00
Last Modified: 09 Dec 2020 15:00
URI: http://eprints.utem.edu.my/id/eprint/24766
Statistic Details: View Download Statistic

Actions (login required)

View Item View Item