DocumentCode
2221721
Title
Virtual symmetry reduction
Author
Emerson, E. Allen ; Havlicek, John W. ; Trefler, Richard J.
Author_Institution
Dept. of Comput. Sci., Texas Univ., Austin, TX, USA
fYear
2000
fDate
2000
Firstpage
121
Lastpage
131
Abstract
We provide a general method for ameliorating state explosion via symmetry reduction in certain asymmetric systems, such as systems with many similar, but not identical, processes. The method applies to systems whose structures (i.e., state transition graphs) have more state symmetries than arc symmetries. We introduce a new notion of “virtual symmetry” that strictly subsumes earlier notions of “rough symmetry” and “near symmetry” (Emerson and Trefler, 1999). Virtual symmetry is the most general condition under which the structure of a system is naturally bisimilar to its quotient by a group of state symmetries. We give several example systems exhibiting virtual symmetry that are not amenable to symmetry reduction by earlier techniques: a one-lane bridge system, where the direction with priority for crossing changes dynamically; an abstract system with asymmetric communication network; and a system with asymmetric resource sharing motivated from the drinking philosophers problem. These examples show that virtual symmetry reduction applies to a significantly broader class of asymmetric systems than could be handled before
Keywords
graph theory; resource allocation; symmetry; temporal logic; arc symmetries; asymmetric communication network; asymmetric resource sharing; asymmetric systems; bisimilarity; drinking philosophers problem; near symmetry; one-lane bridge system; rough symmetry; state explosion; state symmetries; state transition graphs; temporal logic; virtual symmetry reduction; Communication networks; Computational efficiency; Contracts; Explosions; Labeling; Logic; Resource management;
fLanguage
English
Publisher
ieee
Conference_Titel
Logic in Computer Science, 2000. Proceedings. 15th Annual IEEE Symposium on
Conference_Location
Santa Barbara, CA
ISSN
1043-6871
Print_ISBN
0-7695-0725-5
Type
conf
DOI
10.1109/LICS.2000.855761
Filename
855761
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