- Title
- Calibration of an articulated CMM using stochastic approximations
- Creator
- Sultan, Ibrahim; Puthiyaveettil, Prajeesh
- Date
- 2012
- Type
- Text; Journal article
- Identifier
- http://researchonline.federation.edu.au/vital/access/HandleResolver/1959.17/37485
- Identifier
- vital:4804
- Identifier
-
https://doi.org/10.1007/s00170-012-3898-5
- Identifier
- ISSN:0268-3768
- Abstract
- A coordinate measuring machine (CMM) is meant to digitise the spatial locations of points and feed the resulting measurements to a CAD system for storing and processing. For reliable utilisation of a CMM, a calibration procedure is often undertaken to eliminate the inaccuracies which result from manufacturing, assembly and installation errors. In this paper, an Immersion digitizer coordinate measuring machine has been calibrated using an accurately manufactured master cuboid fixture. This CMM has been designed as an articulated manipulator to enhance its dexterity and versatility. As such, the calibration problem is tackled with the aid of a kinematic model similar to those employed for the analysis of serial robots. In addition, a stochastic-based optimisation technique is used to identify the parameters of the kinematic model in order for the accurate performance to be achieved. The experimental results demonstrate the effectiveness of this method, whereby the measuring accuracy has been improved considerably. © 2012 Springer-Verlag London Limited.
- Relation
- International Journal of Advanced Manufacturing Technology Vol. 63, no. 1-4 (2012), p. 201-207
- Rights
- Copyright 2012 Springer-Verlag London Limited.
- Rights
- Open Access
- Rights
- This metadata is freely available under a CCO license
- Subject
- 09 Engineering; 08 Information and Computing Sciences; 01 Mathematical Sciences; Accuracy; Calibration; Digitization; Robots; Accurate performance; CAD system; Calibration problems; Calibration procedure; CMM; Installation error; Kinematic model; Measuring accuracy; Optimisations; Serial robots; Spatial location; Stochastic approximations; Analog to digital conversion; Approximation theory; Computer aided design; Coordinate measuring machines
- Full Text
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