Stochastic geometry for wireless networks / Martin Haenggi.

"Covering point process theory, random geometric graphs and coverage processes, this rigorous introduction to stochastic geometry will enable you to obtain powerful, general estimates and bounds of wireless network performance and make good design choices for future wireless architectures and p...

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Year of Publication:2013
Language:English
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Physical Description:xv, 284 p. :; ill.
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spelling Haenggi, Martin.
Stochastic geometry for wireless networks [electronic resource] / Martin Haenggi.
Cambridge : Cambridge University Press, 2013.
xv, 284 p. : ill.
Includes bibliographical references and index.
Machine generated contents note: Part I. Point Process Theory: 1. Introduction; 2. Description of point processes; 3. Point process models; 4. Sums and products over point processes; 5. Interference and outage in wireless networks; 6. Moment measures of point processes; 7. Marked point processes; 8. Conditioning and Palm theory; Part II. Percolation, Connectivity and Coverage: 9. Introduction; 10. Bond and site percolation; 11. Random geometric graphs and continuum percolation; 12. Connectivity; 13. Coverage; Appendix: introduction to R.
"Covering point process theory, random geometric graphs and coverage processes, this rigorous introduction to stochastic geometry will enable you to obtain powerful, general estimates and bounds of wireless network performance and make good design choices for future wireless architectures and protocols that efficiently manage interference effects. Practical engineering applications are integrated with mathematical theory, with an understanding of probability the only prerequisite. At the same time, stochastic geometry is connected to percolation theory and the theory of random geometric graphs and accompanied by a brief introduction to the R statistical computing language. Combining theory and hands-on analytical techniques with practical examples and exercises, this is a comprehensive guide to the spatial stochastic models essential for modelling and analysis of wireless network performance"-- Provided by publisher.
Electronic reproduction. Ann Arbor, MI : ProQuest, 2015. Available via World Wide Web. Access may be limited to ProQuest affiliated libraries.
Wireless communication systems Mathematics.
Stochastic models.
Electronic books.
ProQuest (Firm)
https://ebookcentral.proquest.com/lib/oeawat/detail.action?docID=1042477 Click to View
language English
format Electronic
eBook
author Haenggi, Martin.
spellingShingle Haenggi, Martin.
Stochastic geometry for wireless networks
Machine generated contents note: Part I. Point Process Theory: 1. Introduction; 2. Description of point processes; 3. Point process models; 4. Sums and products over point processes; 5. Interference and outage in wireless networks; 6. Moment measures of point processes; 7. Marked point processes; 8. Conditioning and Palm theory; Part II. Percolation, Connectivity and Coverage: 9. Introduction; 10. Bond and site percolation; 11. Random geometric graphs and continuum percolation; 12. Connectivity; 13. Coverage; Appendix: introduction to R.
author_facet Haenggi, Martin.
ProQuest (Firm)
ProQuest (Firm)
author_variant m h mh
author2 ProQuest (Firm)
author2_role TeilnehmendeR
author_corporate ProQuest (Firm)
author_sort Haenggi, Martin.
title Stochastic geometry for wireless networks
title_full Stochastic geometry for wireless networks [electronic resource] / Martin Haenggi.
title_fullStr Stochastic geometry for wireless networks [electronic resource] / Martin Haenggi.
title_full_unstemmed Stochastic geometry for wireless networks [electronic resource] / Martin Haenggi.
title_auth Stochastic geometry for wireless networks
title_new Stochastic geometry for wireless networks
title_sort stochastic geometry for wireless networks
publisher Cambridge University Press,
publishDate 2013
physical xv, 284 p. : ill.
contents Machine generated contents note: Part I. Point Process Theory: 1. Introduction; 2. Description of point processes; 3. Point process models; 4. Sums and products over point processes; 5. Interference and outage in wireless networks; 6. Moment measures of point processes; 7. Marked point processes; 8. Conditioning and Palm theory; Part II. Percolation, Connectivity and Coverage: 9. Introduction; 10. Bond and site percolation; 11. Random geometric graphs and continuum percolation; 12. Connectivity; 13. Coverage; Appendix: introduction to R.
isbn 9781139782470 (electronic bk.)
callnumber-first T - Technology
callnumber-subject TK - Electrical and Nuclear Engineering
callnumber-label TK5102
callnumber-sort TK 45102.83 H33 42013
genre Electronic books.
genre_facet Electronic books.
url https://ebookcentral.proquest.com/lib/oeawat/detail.action?docID=1042477
illustrated Illustrated
dewey-hundreds 600 - Technology
dewey-tens 620 - Engineering
dewey-ones 621 - Applied physics
dewey-full 621.39/80151922
dewey-sort 3621.39 880151922
dewey-raw 621.39/80151922
dewey-search 621.39/80151922
oclc_num 819508220
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is_hierarchy_title Stochastic geometry for wireless networks
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