Computational Metrology for the Design and Manufacture of Product Geometry: A Classification and Synthesis

Author:

Srinivasan Vijay12

Affiliation:

1. Member ASME

2. IBM Corporation and Columbia University, New York, NY and University of North Carolina at Charlotte, Charlotte, NC

Abstract

The increasing use of advanced measurement tools and technology in industry over the past 30 years has ushered in a new set of challenging computational problems. These problems can be broadly classified as fitting and filtering of discrete geometric data collected by measurements made on manufactured products. Collectively, they define the field of computational metrology for the design specification, production, and verification of product geometry. The fitting problems can be posed and solved as optimization problems; they involve both continuous and combinatorial optimization problems. The filtering problems can be unified under convolution problems, which include convolutions of functions as well as convolutions of sets. This paper presents the status of research and standardization efforts in computational metrology, with an emphasis on its classification and synthesis.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Graphics and Computer-Aided Design,Computer Science Applications,Software

Reference19 articles.

1. Elements of Computational Metrology;Srinivasan

2. A Geometer Grapples with Tolerancing Standards;Srinivasan

3. Srinivasan, V. , 1996, “How Tall is the Pyramid of Cheops? … and Other Problems in Computational Metrology,” SIAM News, April, Society for Industrial and Applied Mathematics, Philadelphia, PA.

4. Srinivasan, V. , 1994, “Plato’s Factory,” ASME Manufacturing Review, Vol. 7, No. 4.

5. ISO, 1993, Guide to the Expression of Uncertainty in Measurement, International Organization for Standardization, Geneva, Switzerland.

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