The Steady Inverse Heat Conduction Problem: A Comparison of Methods With Parameter Selection
Author:
Affiliation:
1. Department of Electrical Engineering, University of Nebraska, Lincoln, NE 68588
2. Department of Mechanical Engineering and Department of Engineering Mechanics, University of Nebraska, Lincoln, NE 68588
Abstract
Publisher
ASME International
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
http://asmedigitalcollection.asme.org/heattransfer/article-pdf/123/4/633/5912573/633_1.pdf
Reference24 articles.
1. Olson, L. G., and Throne, R. D., 2000, “A Comparison of the Generalized Eigensystem, Truncated Singular Value Decomposition, and Tikhonov Regularization for the Steady Inverse Heat Conduction Problem,” Inverse Problems in Engineering, 8, pp. 193–227.
2. Throne, R., and Olson, L., 1994, “A Generalized Eigensystem Approach to the Inverse Problem of Electrocardiography,” IEEE Trans. Biomed. Eng., 41, pp. 592–600.
3. Throne, R. D., and Olson, L. G., 1995, “The Effects of Errors in Assumed Conductivities and Geometry on Numerical Solutions to the Inverse Problem of Electrocardiography,” IEEE Trans. Biomed. Eng., 42, pp. 1192–1200.
4. Olson, L., and Throne, R., 1995, “Computational Issues Arising in Multidimensional Elliptic Inverse Problems: The Inverse Problem of Electrocardiography,” Eng. Comput., 12, No. 4, pp. 343–356.
5. Throne, R. D., Olson, L. G., Hrabik, T. J., and Windle, J. R., 1997, “Generalized Eigensystem Techniques for the Inverse Problem of Electrocardiography Applied to a Realistic Heart-Torso Geometry,” IEEE Trans. Biomed. Eng., 44, pp. 447–454.
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