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020 _a3319562525
_q(electronic bk.)
020 _a9783319562520
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020 _z3319562517
020 _z9783319562513
_q(print)
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050 4 _aQA164
_b.H369 2017 EB
066 _c(S
100 1 _aHan, Zhu
_d1974-
_eautor
_999469
245 1 0 _aMatching theory for wireless networks
_cZhu Han, Yunan Gu, Walid Saad.
264 1 _aCham, Switzerland
_bSpringer
_c2017.
300 _a1 recurso en línea
336 _aTexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
347 _atext file
_bPDF
_2rda
490 0 _aWireless networks
500 _aSpringerLink
_bSpringer Engineering eBooks 2017 English+International
505 0 _6880-01
_aAcknowledgements; Contents; 1 Introduction; 1.1 Emerging Concepts in Wireless Networks; 1.1.1 Device-to-Device Communication; 1.1.2 LTE V2X Communications; 1.1.3 Facebook Content Caching; 1.1.4 mmWave Networks; 1.1.5 LTE-Unlicensed; 1.1.6 Small Cell Networks; 1.2 Matching Theory in Next-Generation Wireless Networks; 1.3 Book Organization; References; 2 Fundamentals of Matching Theory; 2.1 Preliminaries; 2.2 Conventional Matching Models; 2.3 Wireless-Oriented Matching Models; 2.4 Stability and Information Exchange in Matching Solutions; References.
505 8 _a3 Stable Marriage Model with Cheating for D2D Communications3.1 D2D Communication Introduction; 3.2 System Model and Problem Formulation; 3.3 Resource Allocation with True Preferences; 3.3.1 Admission Control; 3.3.2 Optimal Power Allocation; 3.3.3 Stable Matching by the GS Algorithm; 3.3.4 Stable Matching by the Minimum Weight Algorithm; 3.4 Cheating: The Strategic Issue in Matching; 3.5 Simulation Results and Analysis; 3.6 Conclusions; References; 4 Stable Fixture Model Implementation in LTE V2X Communications; 4.1 LTE V2X Communication Introduction; 4.2 System Model and Problem Formulation.
505 8 _a4.2.1 System Requirements4.2.2 User Uitlity; 4.2.3 Problem Formulation; 4.3 The Stable Fixture Model; 4.3.1 Preference Lists Set up; 4.3.2 The Irving's Algorithm; 4.4 Simulation Results and Analysis; 4.5 Conclusions; References; 5 College Admissions Model for Facebook Content Caching; 5.1 Facebook Hystack Storage System Introduction; 5.2 System Model and Problem Formulation; 5.2.1 Popularity Modeling; 5.2.2 Delay Modeling; 5.2.3 Problem Formulation; 5.3 The College Admissions Model; 5.3.1 Preference Lists Set up; 5.3.2 The Generalized GS Algorithm; 5.4 Simulation Results and Analysis.
505 8 _a7.1 LTE-Unlicensed Introduction7.2 System Model and Problem Formulation; 7.2.1 Coexistence Constraints; 7.2.2 Problem Formulation; 7.3 The Student Project Allocation Model; 7.3.1 Preference Lists Set Up; 7.3.2 SPA-(S, P) Algorithm; 7.4 Matching with Externalities; 7.4.1 The External Effect; 7.4.2 Inter-channel Cooperation Strategy; 7.5 Simulation Results and Analysis; 7.6 Conclusions; References; 8 College Admission Game with Transfers for UL Small Cell Communication; 8.1 Introduction; 8.2 System Model; 8.2.1 Network Model; 8.2.2 Objectives of the Nodes.
520 3 _aThis book provides the fundamental knowledge of the classical matching theory problems. It builds up the bridge between the matching theory and the 5G wireless communication resource allocation problems. The potentials and challenges of implementing the semi-distributive matching theory framework into the wireless resource allocations are analyzed both theoretically and through implementation examples. Academics, researchers, engineers, and so on, who are interested in efficient distributive wireless resource allocation solutions, will find this book to be an exceptional resource.
650 7 _aAnálisis combinatorio
_2embne
_0(OCoLC)fst01011671
_0
_9138441
700 1 _aGu, Yunan,
_eautor
700 1 _aSaad, Walid,
_eautor
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=http://link.springer.com/10.1007/978-3-319-56252-0
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
880 8 _6505-01/(S
_a5.5 ConclusionsReferences; 6 Matching with Minimum Quota for Integrated mmWave-Microwave Networks; 6.1 Introduction; 6.2 System Model and Problem Formulation; 6.2.1 Propagation Model at mmW and μW Frequency Bands; 6.2.2 Problem Formulation; 6.3 Matching with Minimum Quota for mmW-μW Cell Association; 6.3.1 Cell Association as a Matching Game; 6.3.2 Utility and Preference Relations of the UEs and BSs; 6.3.3 Cell Association and Load Balancing Algorithm; 6.4 Simulation Results and Analysis; 6.5 Conclusions; References; 7 Student Project Allocation Model for LTE-Unlicensed.
988 _aEBOOK, asignarmaterias, EBSPRINGER_2017C
998 _b02/2018
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_zSI
999 _c95893
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