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Thomas Ellman
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2000 – 2009
- 2007
- [j10]Thomas Ellman, Andrea Zisman:
Special issue on selected papers from the 20th International Conference on Automated Software Engineering (ASE'2005). Autom. Softw. Eng. 14(2): 127-128 (2007) - 2006
- [j9]Thomas Ellman:
Specification and synthesis of hybrid automata for physics-based animation. Autom. Softw. Eng. 13(3): 395-418 (2006) - 2005
- [j8]Thomas Ellman, Fausto Giunchiglia:
Introduction to the Special Volume on Reformulation. Artif. Intell. 162(1-2): 3-5 (2005) - [c13]Andrea Zisman, Thomas Ellman:
2nd Workshop on the state of the art in automated software engineering. ASE 2005: 464 - [e1]David F. Redmiles, Thomas Ellman, Andrea Zisman:
20th IEEE/ACM International Conference on Automated Software Engineering (ASE 2005), November 7-11, 2005, Long Beach, CA, USA. ACM 2005, ISBN 1-58113-993-4 [contents] - 2003
- [j7]Thomas Ellman, Ryan Deak, Jason Fotinatos:
Automated Synthesis of Numerical Programs for Simulation of Rigid Mechanical Systems in Physics-Based Animation. Autom. Softw. Eng. 10(4): 367-398 (2003) - [c12]Thomas Ellman:
Specification and Synthesis of Hybrid Automata for Physics-Based Animation. ASE 2003: 80-93 - [c11]Thomas Ellman:
Specification and Synthesis of Hybrid Automata for Physics-Based Animation. LOPSTR 2003: 54-55 - 2002
- [c10]Thomas Ellman, Ryan Deak, Jason Fotinatos:
Knowledge-Based Synthesis of Numerical Programs for Simulation of Rigid-Body Systems in Physics-Based Animation. ASE 2002: 93- - 2001
- [j6]Thomas Ellman, Fausto Giunchiglia:
Special Issue of the journal Artificial Intelligence on Reformulation. Artif. Intell. 130(2): 231-232 (2001) - 2000
- [c9]Thomas Ellman:
Program Synthesis and Transformation Techniques for Simulation, Optimization, and Constraint Satisfaction. SARA 2000: 317-319
1990 – 1999
- 1998
- [j5]Mark Schwabacher, Thomas Ellman, Haym Hirsh:
Learning to set up numerical optimizations of engineering designs. Artif. Intell. Eng. Des. Anal. Manuf. 12(2): 173-192 (1998) - [j4]Thomas Ellman, Takahiro Murata:
Deductive Synthesis of Numerical Simulation Programs from Networks of Algebraic and Ordinary Differential Equations. Autom. Softw. Eng. 5(3): 291-319 (1998) - 1997
- [j3]Thomas Ellman, John Eric Keane, Mark Schwabacher, Ke-Thia Yao:
Multilevel modelling for engineering design optimization. Artif. Intell. Eng. Des. Anal. Manuf. 11(5): 357-378 (1997) - 1996
- [j2]Mark Schwabacher, Thomas Ellman, Haym Hirsh:
Inductive learning for engineering design optimization. Artif. Intell. Eng. Des. Anal. Manuf. 10(2): 179-180 (1996) - [c8]Thomas Ellman, Takahiro Murata:
Deductive synthesis of numerical simulation programs from networks of algebraic and ordinary differential equations. KBSE 1996: 2-11 - [c7]John Eric Keane, Thomas Ellman:
Knowledge-based re-engineering of legacy programs for robustness in automated design. KBSE 1996: 104-113 - 1995
- [c6]Thomas Ellman, John Eric Keane, Takahiro Murata, Mark Schwabacher:
A Transformation System for Interactive Reformulation of Design Optimization Strategies. KBSE 1995: 44-51 - 1993
- [c5]Thomas Ellman, John Eric Keane, Mark Schwabacher:
Intelligent Model Selection for Hillclimbing Search in Computer-Aided Design. AAAI 1993: 594-599 - [c4]Thomas Ellman:
Synthesis of Abstraction Hierarchies for Constraint Satisfaction by Clustering Approximately Equivalent Objects. ICML 1993: 104-111 - [c3]Thomas Ellman:
Abstraction via Approximate Symmetry. IJCAI 1993: 916-921
1980 – 1989
- 1989
- [j1]Thomas Ellman:
Explanation-Based Learning: A Survey of Programs and Perspectives. ACM Comput. Surv. 21(2): 163-221 (1989) - 1988
- [c2]Thomas Ellman:
Approximate Theory Formation: An Explanation-Based Approach. AAAI 1988: 570-574 - 1985
- [c1]Thomas Ellman:
Generalizing Logic Circuit Designs by Analyzing Proofs of Correctness. IJCAI 1985: 643-646
Coauthor Index
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