Rendezvous in Distributed Systems : Theory, Algorithms and Applications /

This book introduces novel solutions to the rendezvous problem in distributed systems, a fundamental problem that underpins the construction of many important functions in distributed systems and networks. The book covers rendezvous theories, distributed rendezvous algorithms, and rendezvous applica...

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Bibliographic Details
Main Authors: Gu, Zhaoquan
Corporate Authors: SpringerLink Online service
Group Author: Wang, Yuexuan; Hua, Qiang-Sheng; Lau, Francis C. M
Published: Springer Singapore : Imprint: Springer,
Publisher Address: Singapore :
Publication Dates: 2017.
Literature type: eBook
Language: English
Subjects:
Online Access: http://dx.doi.org/10.1007/978-981-10-3680-4
Summary: This book introduces novel solutions to the rendezvous problem in distributed systems, a fundamental problem that underpins the construction of many important functions in distributed systems and networks. The book covers rendezvous theories, distributed rendezvous algorithms, and rendezvous applications in practical systems, presents state-of-the-art rendezvous results and highlights the latest methods of rendezvous in distributed systems. It provides in particular an in-depth treatment of the blind rendezvous and oblivious blind rendezvous problems and their solutions. Further, it sheds ne
Carrier Form: 1 online resource(XIX,262pages): illustrations
ISBN: 9789811036804
Index Number: QA76
CLC: TP393.027
Contents: Part I: Distributed Rendezvous Theory -- Chapter 1 Distributed Systems -- Chapter 2 Rendezvous Theory and Its Applications -- Part II: Blind Rendezvous in Distributed Systems -- Chapter 3 The Blind Rendezvous Problem -- Chapter 4 Global Sequence Based Rendezvous Algorithms -- Chapter 5 Local Sequence Based Rendezvous Algorithms -- Part III: Oblivious Blind Rendezvous in Distributed Systems -- Chapter 6 The Oblivious Blind Rendezvous Problem -- Chapter 7 Randomized Algorithms for Anonymous Users -- Chapter 8 Deterministic Algorithms for Non-anonymous Users -- Chapter 9 Fully Distributed Rende