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Stabilization, Safety, and Security of Distributed Systems

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Cover of 'Stabilization, Safety, and Security of Distributed Systems'

Table of Contents

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    Book Overview
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    Chapter 1 Challenges in Personalizing and Decentralizing the Web: An Overview of GOSSPLE
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    Chapter 2 Local Algorithms: Self-stabilization on Speed
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    Chapter 3 As Good as It Gets: Competitive Fault Tolerance in Network Structures
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    Chapter 4 Multicore Constraint-Based Automated Stabilization
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    Chapter 5 A Theory of Network Tracing
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    Chapter 6 Developing Autonomic and Secure Virtual Organisations with Chemical Programming
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    Chapter 7 Making Population Protocols Self-stabilizing
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    Chapter 8 Analysis of Wireless Sensor Network Protocols in Dynamic Scenarios
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    Chapter 9 Consensus When All Processes May Be Byzantine for Some Time
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    Chapter 10 A Superstabilizing log( n )-Approximation Algorithm for Dynamic Steiner Trees
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    Chapter 11 Looking for the Weakest Failure Detector for k -Set Agreement in Message-Passing Systems: Is ${\it \Pi}_k$ the End of the Road?
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    Chapter 12 Optimal Byzantine Resilient Convergence in Asynchronous Robots Networks
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    Chapter 13 FoG : Fighting the Achilles’ Heel of Gossip Protocols with Fountain Codes
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    Chapter 14 How to Improve Snap-Stabilizing Point-to-Point Communication Space Complexity?
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    Chapter 15 Fault-Containment in Weakly-Stabilizing Systems
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    Chapter 16 Stability of Distributed Algorithms in the Face of Incessant Faults
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    Chapter 17 Dependability Engineering of Silent Self-stabilizing Systems
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    Chapter 18 Robustness and Dependability of Self-Organizing Systems - A Safety Engineering Perspective
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    Chapter 19 Efficient Robust Storage Using Secret Tokens
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    Chapter 20 An Optimal Self-stabilizing Firing Squad
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    Chapter 21 Anonymous Transactions in Computer Networks
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    Chapter 22 Nash Equilibria in Stabilizing Systems
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    Chapter 23 ACCADA: A Framework for Continuous Context-Aware Deployment and Adaptation
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    Chapter 24 A Self-stabilizing Approximation Algorithm for Vertex Cover in Anonymous Networks
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    Chapter 25 Separation of Circulating Tokens
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    Chapter 26 Visiting Gafni’s Reduction Land: From the BG Simulation to the Extended BG Simulation
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    Chapter 27 Randomized Gathering of Mobile Robots with Local-Multiplicity Detection
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    Chapter 28 Scalable P2P Overlays of Very Small Constant Degree: An Emerging Security Threat
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    Chapter 29 CFlood: A Constrained Flooding Protocol for Real-time Data Delivery in Wireless Sensor Networks
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    Chapter 30 Cached Sensornet Transformation of Non-silent Self-stabilizing Algorithms with Unreliable Links
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    Chapter 31 Analysis of an Intentional Fault Which Is Undetectable by Local Checks under an Unfair Scheduler
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    Chapter 32 Exploring Polygonal Environments by Simple Robots with Faulty Combinatorial Vision
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    Chapter 33 Finding Good Partners in Availability-Aware P2P Networks
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    Chapter 34 Churn-Resilient Replication Strategy for Peer-to-Peer Distributed Hash-Tables
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    Chapter 35 Distributed Power Control with Multiple Agents in a Distributed Base Station Scheme Using Macrodiversity
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    Chapter 36 Redundancy Maintenance and Garbage Collection Strategies in Peer-to-Peer Storage Systems
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    Chapter 37 Model Checking Coalition Nash Equilibria in MAD Distributed Systems
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    Chapter 38 OpenMP Support for NBTI-Induced Aging Tolerance in MPSoCs
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    Chapter 39 A Self-stabilizing Algorithm for Graph Searching in Trees
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    Chapter 40 Stabilization, Safety, and Security of Distributed Systems
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    Chapter 41 From Local Impact Functions to Global Adaptation of Service Compositions
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    Chapter 42 A Wireless Security Framework without Shared Secrets
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    Chapter 43 Read-Write-Codes: An Erasure Resilient Encoding System for Flexible Reading and Writing in Storage Networks
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    Chapter 44 Distributed Sleep Scheduling in Wireless Sensor Networks via Fractional Domatic Partitioning
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    Chapter 45 Network-Friendly Gossiping
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    Chapter 46 Black Hole Search with Tokens in Interconnected Networks
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    Chapter 47 Oracle-Based Flocking of Mobile Robots in Crash-Recovery Model
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    Chapter 48 Speculation for Parallelizing Runtime Checks
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    Chapter 49 Optimistic Fair Exchange Using Trusted Devices
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    Chapter 50 Application Data Consistency Checking for Anomaly Based Intrusion Detection
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    Chapter 51 Self Adaptive High Interaction Honeypots Driven by Game Theory
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    Chapter 52 Cooperative Autonomic Management in Dynamic Distributed Systems
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    Chapter 53 Brief Announcement: Consistent Fixed Points and Negative Gain
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    Chapter 54 Brief Announcement: Induced Churn to Face Adversarial Behavior in Peer-to-Peer Systems
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    Chapter 55 Safer Than Safe: On the Initial State of Self-stabilizing Systems
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    Chapter 56 Brief Announcement: Unique Permutation Hashing
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    Chapter 57 Randomization Adaptive Self-stabilization
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    Chapter 58 Brief Announcement: On the Time Complexity of Distributed Topological Self-stabilization
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    Chapter 59 Brief Announcement: An OS Architecture for Device Self-protection
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    Chapter 60 Brief Announcement: Towards Secure Cloud Computing
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    Chapter 61 Brief Announcement: Robust Self-stabilizing Construction of Bounded Size Weight-Based Clusters
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    Chapter 62 Brief Announcement: A Stabilizing Algorithm for Finding Two Disjoint Paths in Arbitrary Networks
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    Chapter 63 Relocation Analysis of Stabilizing MAC
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    Chapter 64 Brief Announcement: A Simple and Quiescent Omega Algorithm in the Crash-Recovery Model
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    Chapter 65 Brief Announcement: How to Overcome the Limits of Bounds
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    Chapter 66 Brief Announcement: The Design and Evaluation of a Distributed Reliable File System
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Title
Stabilization, Safety, and Security of Distributed Systems
Published by
Springer Berlin Heidelberg, November 2009
DOI 10.1007/978-3-642-05118-0
ISBNs
978-3-64-205117-3, 978-3-64-205118-0
Editors

Guerraoui, Rachid, Petit, Franck

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 42 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Malaysia 1 2%
Portugal 1 2%
Germany 1 2%
Unknown 39 93%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 15 36%
Student > Master 9 21%
Student > Doctoral Student 4 10%
Researcher 4 10%
Student > Bachelor 2 5%
Other 6 14%
Unknown 2 5%
Readers by discipline Count As %
Computer Science 28 67%
Engineering 6 14%
Business, Management and Accounting 2 5%
Social Sciences 1 2%
Psychology 1 2%
Other 0 0%
Unknown 4 10%