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Stabilization, Safety, and Security of Distributed Systems

Overview of attention for book
Cover of 'Stabilization, Safety, and Security of Distributed Systems'

Table of Contents

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    Book Overview
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    Chapter 1 Arcane Information, Solving Relations, and Church Censorship
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    Chapter 2 Computation of Equilibria and Stable Solutions
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    Chapter 3 A Geometry of Networks
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    Chapter 4 Systematic Correct Construction of Self-stabilizing Systems: A Case Study
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    Chapter 5 A Fault-Resistant Asynchronous Clock Function
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    Chapter 6 Self-stabilizing Leader Election in Dynamic Networks
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    Chapter 7 Loop-Free Super-Stabilizing Spanning Tree Construction
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    Chapter 8 A New Technique for Proving Self-stabilizing under the Distributed Scheduler
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    Chapter 9 A Tranformational Approach for Designing Scheduler-Oblivious Self-stabilizing Algorithms
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    Chapter 10 On Byzantine Containment Properties of the min  + 1 Protocol
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    Chapter 11 Efficient Self-stabilizing Graph Searching in Tree Networks
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    Chapter 12 Adaptive Containment of Time-Bounded Byzantine Faults
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    Chapter 13 Brief Announcement: Fast Convergence in Route-Preservation
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    Chapter 14 Authenticated Broadcast with a Partially Compromised Public-Key Infrastructure
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    Chapter 15 On Applicability of Random Graphs for Modeling Random Key Predistribution for Wireless Sensor Networks
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    Chapter 16 “Slow Is Fast” for Wireless Sensor Networks in the Presence of Message Losses
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    Chapter 17 Modeling and Analyzing Periodic Distributed Computations
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    Chapter 18 Complexity Issues in Automated Model Revision without Explicit Legitimate State
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    Chapter 19 Algorithmic Verification of Population Protocols
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    Chapter 20 Energy Management for Time-Critical Energy Harvesting Wireless Sensor Networks
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    Chapter 21 Stably Decidable Graph Languages by Mediated Population Protocols
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    Chapter 22 Broadcasting in Sensor Networks of Unknown Topology in the Presence of Swamping
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    Chapter 23 Brief Announcement: Configuration of Actuated Camera Networks for Multi-target Coverage
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    Chapter 24 Brief Announcement: On the Hardness of Topology Inference
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    Chapter 25 Self-stabilizing Algorithm of Two-Hop Conflict Resolution
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    Chapter 26 Stabilization, Safety, and Security of Distributed Systems
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    Chapter 27 Connectivity-Preserving Scattering of Mobile Robots with Limited Visibility
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    Chapter 28 Computing in Social Networks
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    Chapter 29 On Transactional Scheduling in Distributed Transactional Memory Systems
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    Chapter 30 Recursion in Distributed Computing
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    Chapter 31 On Adaptive Renaming under Eventually Limited Contention
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    Chapter 32 RobuSTM: A Robust Software Transactional Memory
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    Chapter 33 A Provably Starvation-Free Distributed Directory Protocol
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    Chapter 34 Lightweight Live Migration for High Availability Cluster Service
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    Chapter 35 Approximation of δ -Timeliness
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    Chapter 36 A Framework for Adaptive Optimization of Remote Synchronous CSCW in the Cloud Computing Era
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    Chapter 37 <Emphasis FontCategory="SansSerif">Chameleon-MAC</Emphasis>: Adaptive and Self-⋆ Algorithms for Media Access Control in Mobile Ad Hoc Networks
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    Chapter 38 A Comparative Study of Rateless Codes for P2P Persistent Storage
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    Chapter 39 Dynamically Reconfigurable Filtering Architectures
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    Chapter 40 A Quantitative Analysis of Redundancy Schemes for Peer-to-Peer Storage Systems
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    Chapter 41 A Framework for Secure and Private P2P Publish/Subscribe
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    Chapter 42 Snap-Stabilizing Linear Message Forwarding
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    Chapter 43 Vulnerability Analysis of High Dimensional Complex Systems
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    Chapter 44 Storage Capacity of Labeled Graphs
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    Chapter 45 Safe Flocking in Spite of Actuator Faults
Attention for Chapter 6: Self-stabilizing Leader Election in Dynamic Networks
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Chapter title
Self-stabilizing Leader Election in Dynamic Networks
Chapter number 6
Book title
Stabilization, Safety, and Security of Distributed Systems
Published in
Lecture notes in computer science, September 2010
DOI 10.1007/978-3-642-16023-3_6
Book ISBNs
978-3-64-216022-6, 978-3-64-216023-3

Ajoy K. Datta, Lawrence L. Larmore, Hema Piniganti

Twitter Demographics

The data shown below were collected from the profile of 1 tweeter who shared this research output. Click here to find out more about how the information was compiled.

Mendeley readers

The data shown below were compiled from readership statistics for 3 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 3 100%

Demographic breakdown

Readers by professional status Count As %
Professor 1 33%
Other 1 33%
Student > Doctoral Student 1 33%
Readers by discipline Count As %
Computer Science 1 33%
Social Sciences 1 33%
Engineering 1 33%

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 08 April 2014.
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