DocumentCode
2356529
Title
Local optimization of global objectives: competitive distributed deadlock resolution and resource allocation
Author
Awerbuch, Baruch ; Azar, Yossi
Author_Institution
Johns Hopkins Univ., Baltimore, MD, USA
fYear
1994
fDate
20-22 Nov 1994
Firstpage
240
Lastpage
249
Abstract
The work is motivated by deadlock resolution and resource allocation problems, occurring in distributed server-client architectures. We consider a very general setting which includes, as special cases, distributed bandwidth management in communication networks, as well as variations of classical problems in distributed computing and communication networking such as deadlock: resolution and “dining philosophers”. In the current paper, we exhibit first local solutions with globally-optimum performance guarantees. An application of our method is distributed bandwidth management in communication networks. In this setting, deadlock resolution (and maximum fractional independent set) corresponds to admission control maximizing network throughput. Job scheduling (and minimum fractional coloring) corresponds to route selection that minimizes load
Keywords
client-server systems; distributed processing; resource allocation; scheduling; telecommunication networks; admission control; communication networking; communication networks; competitive distributed deadlock resolution; distributed bandwidth management; distributed computing; distributed server-client architectures; global objectives; globally-optimum performance; job scheduling; local optimization; maximum fractional independent set; minimum fractional coloring; network throughput; resource allocation; Admission control; Bandwidth; Communication networks; Computer architecture; Computer network management; Computer science; Contracts; Distributed computing; Resource management; System recovery;
fLanguage
English
Publisher
ieee
Conference_Titel
Foundations of Computer Science, 1994 Proceedings., 35th Annual Symposium on
Conference_Location
Santa Fe, NM
Print_ISBN
0-8186-6580-7
Type
conf
DOI
10.1109/SFCS.1994.365690
Filename
365690
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