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Memory-Efficient and Self-Stabilizing Network RESET (Extended Abstract) (1994)
| Content Provider | CiteSeerX |
|---|---|
| Author | Awerbuch, Baruch Ostrovsky, Rafail |
| Description | In PODC94 Proceedings of the Thirteenth Annual ACM Symposium on Principles of Distributed Computing ) Baruch Awerbuch Rafail Ostrovsky y August 15, 1994 Abstract In this paper we consider the question of fault-tolerant distributed network protocols with extremely small memory requirements per processor. In particular, we show that even in the case of worst-case transient faults (i.e., in a self-stabilizing setting), many fundamental network protocols can be achieved using only O(log n) bits of memory per incident network edge. In the heart of our construction is a self-stabilizing asynchronous network reset protocol with the same small memory requirements. Johns Hopkins University, Baltimore, MD 21218, and MIT Lab. for Computer Science. E-mail: baruch@blaze.cs.jhu.edu. Supported by Air Force Contract TNDGAFOSR-86-0078, ARPA/Army contract DABT63-93-C-0038, ARO contract DAAL03-86-K-0171, NSF contract 9114440-CCR, DARPA contract N00014-J-92-1799. y U.C. Berkeley and ICSI. Supported by NSF postdoctoral fellowship and ICSI. E-mail: rafail@cs.berkeley.edu. 1 1 Introduction... |
| File Format | |
| Language | English |
| Publisher Date | 1994-01-01 |
| Access Restriction | Open |
| Subject Keyword | Nsf Postdoctoral Fellowship Extended Abstract Arpa Army Contract Dabt63-93-c-0038 John Hopkins University Self-stabilizing Asynchronous Network Aro Contract Daal03-86-k-0171 Computer Science Incident Network Edge Mit Lab Rafail C Network Protocol Self-stabilizing Setting Air Force Contract Tndgafosr-86-0078 Nsf Contract Many Fundamental Network Protocol U.c. Berkeley Worst-case Transient Fault Baruch Blaze Self-stabilizing Network Reset Darpa Contract N00014-j-92-1799 Baruch Awerbuch Rafail Ostrovsky August Small Memory Requirement |
| Content Type | Text |
| Resource Type | Article |