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IJAT Vol.9 No.5 pp. 546-550
doi: 10.20965/ijat.2015.p0546
(2015)

Paper:

Calibration Using Cylindrical Artifacts for 3D Laser Measurement System

Kazuhiro Enami

Mechanical Engineering Center, High Energy Accelerator Research Organization
1-1 Oho, Tsukuba, Ibaraki 305-0801, Japan

Received:
January 31, 2015
Accepted:
June 29, 2015
Published:
September 5, 2015
Keywords:
3D measurement, calibration, artifact calibration
Abstract
We propose a new calibration method for 3D laser measurement systems used for inspecting the insides of industrial parts such as vessels and pipes. We developed the proposed calibration system using a cylindrical artifact such that the calibration is simple and easy to perform. We simulated and analyzed the proposed cylindrical artifact calibration method and the results demonstrate its adequacy.
Cite this article as:
K. Enami, “Calibration Using Cylindrical Artifacts for 3D Laser Measurement System,” Int. J. Automation Technol., Vol.9 No.5, pp. 546-550, 2015.
Data files:
References
  1. [1] K. Enami, T. Kume, Y. Higashi, and K. Ueno, “3D Measurement of Internal Shape of Accelerator Cavities,” Asian Symposium for Precision Engineering and Nanotechnology, Kita-Kyusyu, 1A2-15, 2009.
  2. [2] O. Sato, K. Shimojima, R. Furutani, and K. Takamasu, “Artefact calibration of parallel mechanism, kinematic calibration with a priori knowledge,” Measurement Science and Technology, Vol.15, issue 6, pp. 1158-1165, 2004.
  3. [3] K. Umetsu, R. Furutani, S. Osawa, T. TkatsujiI, and T. Kurosawa, “Optimization of Measurement Strategy for calibration of Coordinate Measuring Machine,” J. of the Japan Society for Precision Engineering, Vol.70, No.9, pp. 1174-1179, 2004.
  4. [4] S. Osawa and O. Sato, “Industrial standardization of evaluation of non-contact CMM,” Measurement standards and metrology management., Vol.57, No.2, pp. 2-6, 2007 (in Japanese).
  5. [5] K. Enami, T. Kume, Y. Higashi, and K. Ueno, “3D Measurement of Inner Shape of Accelerator Cavities,” ISMQC (Int. Symposium on Measurement and Quality Control) 2010 Proc., Osaka, Japan, pp. 1899-1902, 2010.
  6. [6] K. Enami, T. Kume, Y. Higashi, and K. Ueno, “3D Measurement of the Inner Shape of a 1-Cell Accelerator Cavity,” Int. J. of Automation Technology, Vol.5, No.2, pp. 156-161, 2011.
  7. [7] K. Enami, T. Kume, Y. Higashi, and K. Ueno, “Development of non-contact 3D measurement system for parts of accelerator cavities,” euspen 2011, P4.15, Como, Italy, May 26, 2011.

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