Description

Book Synopsis
A quorum system is a collection of subsets of nodes, called quorums, with the property that each pair of quorums have a non-empty intersection. Quorum systems are the key mathematical abstraction for ensuring consistency in fault-tolerant and highly available distributed computing. Critical for many applications since the early days of distributed computing, quorum systems have evolved from simple majorities of a set of processes to complex hierarchical collections of sets, tailored for general adversarial structures. The initial non-empty intersection property has been refined many times to account for, e.g., stronger (Byzantine) adversarial model, latency considerations or better availability. This monograph is an overview of the evolution and refinement of quorum systems, with emphasis on their role in two fundamental applications: distributed read/write storage and consensus. Table of Contents: Introduction / Preliminaries / Classical Quorum Systems / Classical Quorum-Based Emulations / Byzantine Quorum Systems / Latency-efficient Quorum Systems / Probabilistic Quorum Systems

Table of Contents
Introduction.- Preliminaries.- Classical Quorum Systems.- Classical Quorum-Based Emulations.- Byzantine Quorum Systems.- Latency-efficient Quorum Systems.- Probabilistic Quorum Systems.

Quorum Systems: With Applications to Storage and Consensus

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A Paperback by Marko Vukolic

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    View other formats and editions of Quorum Systems: With Applications to Storage and Consensus by Marko Vukolic

    Publisher: Springer International Publishing AG
    Publication Date: 27/01/2012
    ISBN13: 9783031008795, 978-3031008795
    ISBN10: 3031008790

    Description

    Book Synopsis
    A quorum system is a collection of subsets of nodes, called quorums, with the property that each pair of quorums have a non-empty intersection. Quorum systems are the key mathematical abstraction for ensuring consistency in fault-tolerant and highly available distributed computing. Critical for many applications since the early days of distributed computing, quorum systems have evolved from simple majorities of a set of processes to complex hierarchical collections of sets, tailored for general adversarial structures. The initial non-empty intersection property has been refined many times to account for, e.g., stronger (Byzantine) adversarial model, latency considerations or better availability. This monograph is an overview of the evolution and refinement of quorum systems, with emphasis on their role in two fundamental applications: distributed read/write storage and consensus. Table of Contents: Introduction / Preliminaries / Classical Quorum Systems / Classical Quorum-Based Emulations / Byzantine Quorum Systems / Latency-efficient Quorum Systems / Probabilistic Quorum Systems

    Table of Contents
    Introduction.- Preliminaries.- Classical Quorum Systems.- Classical Quorum-Based Emulations.- Byzantine Quorum Systems.- Latency-efficient Quorum Systems.- Probabilistic Quorum Systems.

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