Networks: Optimisation and Evolution

Networks: Optimisation and Evolution

by Peter Whittle
ISBN-10:
052187100X
ISBN-13:
9780521871006
Pub. Date:
04/12/2007
Publisher:
Cambridge University Press
ISBN-10:
052187100X
ISBN-13:
9780521871006
Pub. Date:
04/12/2007
Publisher:
Cambridge University Press
Networks: Optimisation and Evolution

Networks: Optimisation and Evolution

by Peter Whittle

Hardcover

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Overview

Point-to-point vs hub-and-spoke. Questions of network design are real and involve many billions of dollars. Yet little is known about optimising design - nearly all work concerns optimising flow assuming a given design. This foundational book tackles optimisation of network structure itself, deriving comprehensible and realistic design principles. With fixed material cost rates, a natural class of models implies the optimality of direct source-destination connections, but considerations of variable load and environmental intrusion then enforce trunking in the optimal design, producing an arterial or hierarchical net. Its determination requires a continuum formulation, which can however be simplified once a discrete structure begins to emerge. Connections are made with the masterly work of Bendsøe and Sigmund on optimal mechanical structures and also with neural, processing and communication networks, including those of the Internet and the World Wide Web. Technical appendices are provided on random graphs and polymer models and on the Klimov index.

Product Details

ISBN-13: 9780521871006
Publisher: Cambridge University Press
Publication date: 04/12/2007
Series: Cambridge Series in Statistical and Probabilistic Mathematics , #21
Pages: 282
Product dimensions: 7.28(w) x 10.24(h) x 0.71(d)

About the Author

Peter Whittle is Professor Emeritus at the University of Cambridge. From 1973 to 1986 he was Director of the Statistical Laboratory, Cambridge. He is a Fellow of the Royal Society and this is his 11th book.

Table of Contents

Tour d'horizon; Part I. Distribution Networks: 1. Simple flows; 2. Continuum formulations; 3. Multi-class and destination-specific flows; 4. Design optimality under variable loading; 5. Concave costs and hierarchical structure; 6. Road networks; 7. Structural optimisation: Michell structures; 8. Structures: computational experience of evolutionary algorithms; 9. Structure design for variable loading; Part II. Artificial Neural Networks: 10. Models and learning; 11. Some particular nets; 12. Oscillatory operation; Part III. Processing Networks: 13. Queuing networks; 14. Time-sharing networks; Part IV. Communication Networks: 15. Loss networks: optimality and robustness; 16. Loss networks: stochastics and self-regulation; 17. Operation of the Internet; 18. Evolving networks and the World-wide Web; Appendix 1. Spatial integrals for the telephone problem; Appendix 2. Bandit and tax processes; Appendix 3. Random graphs and polymer models; References; Index.
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