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Principles of Distributed Systems : 13th International Conference, OPODIS 2009, Nîmes, France, December 15-18, 2009. Proceedings / edited by Tarek F. Abdelzaher, Michel Raynal, Nicola Santoro.

SpringerLink Books Lecture Notes In Computer Science (LNCS) (1997-2024) Available online

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Format:
Book
Contributor:
Abdelzaher, Tarek F., editor.
Raynal, M. (Michel), editor.
Santoro, Nicola, editor.
SpringerLink (Online service)
Series:
Computer Science (Springer-11645)
LNCS sublibrary. Theoretical computer science and general issues ; SL 1, 5923.
Theoretical Computer Science and General Issues ; 5923
Language:
English
Subjects (All):
Computer networks.
Computer programming.
User interfaces (Computer systems).
Computers.
Computer organization.
Management information systems.
Computer science.
Computer Communication Networks.
Programming Techniques.
User Interfaces and Human Computer Interaction.
Information Systems and Communication Service.
Computer Systems Organization and Communication Networks.
Management of Computing and Information Systems.
Local Subjects:
Computer Communication Networks.
Programming Techniques.
User Interfaces and Human Computer Interaction.
Information Systems and Communication Service.
Computer Systems Organization and Communication Networks.
Management of Computing and Information Systems.
Physical Description:
1 online resource (XIII, 373 pages).
Edition:
First edition 2009.
Contained In:
Springer eBooks
Place of Publication:
Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2009.
System Details:
text file PDF
Summary:
This book constitutes the refereed proceedings of the 13th International Conference on Principles of Distributed Systems, OPODIS 2009, held in Nimes, France, in December 2009. The 23 full papers and 4 short papers presented were carefully reviewed and selected from 72 submissions. The papers are organized in topical sections on distributed scheduling, distributed robotics, fault and failure detection, wireless and social networks, synchronization, storage systems, distributed agreement, and distributed algorithms.
Contents:
Invited Talks
Transactional Memory Today: A Status Report
Navigating the Web 2.0 with Gossple
Distributed Scheduling
Transactional Scheduling for Read-Dominated Workloads
Performance Evaluation of Work Stealing for Streaming Applications
Not All Fair Probabilistic Schedulers Are Equivalent
Brief Announcement: Relay: A Cache-Coherence Protocol for Distributed Transactional Memory
Distributed Robotics
Byzantine Convergence in Robot Networks: The Price of Asynchrony
Deaf, Dumb, and Chatting Asynchronous Robots
Synchronization Helps Robots to Detect Black Holes in Directed Graphs
Fault and Failure Detection
The Fault Detection Problem
The Minimum Information about Failures for Solving Non-local Tasks in Message-Passing Systems
Enhanced Fault-Tolerance through Byzantine Failure Detection
Wireless and Social Networks
Decentralized Polling with Respectable Participants
Efficient Power Utilization in Multi-radio Wireless Ad Hoc Networks
Adversarial Multiple Access Channel with Individual Injection Rates
Synchronization
NB-FEB: A Universal Scalable Easy-to-Use Synchronization Primitive for Manycore Architectures
Gradient Clock Synchronization Using Reference Broadcasts
Brief Announcement: Communication-Efficient Self-stabilizing Protocols for Spanning-Tree Construction
Storage Systems
On the Impact of Serializing Contention Management on STM Performance
On the Efficiency of Atomic Multi-reader, Multi-writer Distributed Memory
Abortable Fork-Linearizable Storage
Distributed Agreement
On the Computational Power of Shared Objects
Weak Synchrony Models and Failure Detectors for Message Passing (k-)Set Agreement
Unifying Byzantine Consensus Algorithms with Weak Interactive Consistency
Distributed Algorithms
Safe and Eventually Safe: Comparing Self-stabilizing and Non-stabilizing Algorithms on a Common Ground
Proactive Fortification of Fault-Tolerant Services
Robustness of the Rotor-router Mechanism
Brief Annoucement: Analysis of an Optimal Bit Complexity Randomised Distributed Vertex Colouring Algorithm
Brief Annoucement: Distributed Swap Edges Computation for Minimum Routing Cost Spanning Trees.
Other Format:
Printed edition:
ISBN:
978-3-642-10877-8
9783642108778
Access Restriction:
Restricted for use by site license.

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