Automatic Camera Adjustment in XYZ Direction in a Vision System by Using NI LabVIEW and FPGA Programming
Nishchitha C V
, Dr. Mahantesh K
Vision System, LabVIEW, Stepper Motor, Altera FPGA, Automobile Clusters.
Vision system is manufacturer primary consideration to automate production or to improve quality. Vision system can complete the complex task at very high speed with high accuracy and consistency. One of the company which provides industrial vision testing solution is GOEPEL Electronics India Pvt ltd. The company’s focus is on solutions and products for testing car seats, ECU’s and electronic assemblies. In this company automobile clusters are tested by using TOM Line vision system. In this TOM Line setup industrial camera is part of it which is fixed in its position. If the camera is fixed then we can test only half part of the cluster at a time. Full part of the cluster is tested by moving the camera in XYZ direction which is explained in this paper. Stepper motor is used to move the camera in XYZ direction and the steps to reach the expected position is saved. In this paper stepper motor is interfaced with labVIEW using Altera FPGA.
"Automatic Camera Adjustment in XYZ Direction in a Vision System by Using NI LabVIEW and FPGA Programming", IJSDR - International Journal of Scientific Development and Research (www.IJSDR.org), ISSN:2455-2631, Vol.2, Issue 6, page no.264 - 270, June-2017, Available :https://ijsdr.org/papers/IJSDR1706036.pdf
Volume 2
Issue 6,
June-2017
Pages : 264 - 270
Paper Reg. ID: IJSDR_170526
Published Paper Id: IJSDR1706036
Downloads: 000347202
Research Area: Engineering
Country: Bengaluru, Karnataka, India
ISSN: 2455-2631 | IMPACT FACTOR: 9.15 Calculated By Google Scholar | ESTD YEAR: 2016
An International Scholarly Open Access Journal, Peer-Reviewed, Refereed Journal Impact Factor 9.15 Calculate by Google Scholar and Semantic Scholar | AI-Powered Research Tool, Multidisciplinary, Monthly, Multilanguage Journal Indexing in All Major Database & Metadata, Citation Generator
Publisher: IJSDR(IJ Publication) Janvi Wave