Search Results - (((((((want OR pants) OR wanting) OR makant) OR cantor) OR anne) OR share) OR hints) algorithms.

  1. 221

    Global optimization methods in geophysical inversion by Sen, Mrinal K.

    Published 2013
    Table of Contents: “…5.6 Multimodal fitness functions, genetic drift, GA with sharing, and repeat (parallel) GA -- 5.7 Uncertainty estimates -- 5.8 Evolutionary programming -- a variant of GA -- 5.9 Summary -- 6 Other stochastic optimization methods -- 6.1 The neighborhood algorithm (NA) -- 6.1.1 Voronoi diagrams -- 6.1.2 Voronoi diagrams in SA and GA -- 6.1.3 Neighborhood sampling algorithm -- 6.2 Particle swarm optimization (PSO) -- 6.3 Simultaneous perturbation stochastic approximation (SPSA) -- 7 Geophysical applications of simulated annealing and genetic algorithms -- 7.1 1D seismic waveform inversion -- 7.1.1 Application of heat bath SA -- 7.1.2 Application of GAs -- 7.1.3 Real-data examples -- 7.1.4 Hybrid GA/LI inversion using different measures of fitness -- 7.1.5 Hybrid VFSA inversion using different strategies -- 7.2 Prestack migration velocity estimation -- 7.2.1 1D earth structure -- 7.2.2 2D earth structure -- 7.2.3 Multiple and simultaneous VFSA for imaging -- 7.3 Inversion of resistivity sounding data for 1D earth models -- 7.3.1 Exact parameterization -- 7.3.2 Overparameterization with smoothing -- 7.4 Inversion of resistivity profiling data for 2D earth models -- 7.4.1 Inversion of synthetic data -- 7.4.2 Inversion of field data -- 7.5 Inversion of magnetotelluric sounding data for 1D earth models -- 7.6 Stochastic reservoir modeling -- 7.7 Seismic deconvolution by mean field annealing (MFA) and Hopfield network -- 7.7.1 Synthetic example -- 7.7.2 Real-data example -- 7.8 Joint inversion -- 7.8.1 Joint travel time and gravity inversion -- 7.8.2 Time-lapse (4D) seismic and well production joint inversion -- 8 Uncertainty estimation -- 8.1 Methods of numerical integration -- 8.1.1 Grid search or enumeration -- 8.1.2 Monte Carlo integration -- 8.1.3 Importance sampling -- 8.1.4 Multiple MAP estimation -- 8.2 Simulated annealing: the Gibbs sampler.…”
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  2. 222

    Limits, Limits Everywhere : the Tools of Mathematical Analysis by Applebaum, David, 1956-

    Published 2012
    Table of Contents: “…Continued Fractions; 9.1 Euclid's Algorithm; 9.2 Rational and Irrational Numbers as Continued Fractions; 10. …”
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  3. 223

    Legitimate applications of peer to peer networks by Verma, Dinesh C.

    Published 2004
    Table of Contents: “…-- Organization of the Book -- 1 The Peer-to-Peer Architecture -- 1.1 Distributed Applications -- 1.1.1 A Distributed Computing Example -- 1.1.2 Client-Server Architecture -- 1.1.3 Peer-to-Peer Architecture -- 1.2 The Peer-to-Peer Software Structure -- 1.2.1 Base Overlay Layer -- 1.2.2 Middleware Functions -- 1.2.3 Application Layer -- 1.3 Comparison of Architectures -- 1.3.1 Ease of Development -- 1.3.2 Manageability -- 1.3.3 Scalability -- 1.3.4 Administrative Domains -- 1.3.5 Security -- 1.3.6 Reliability -- 2 Peer Discovery and Overlay Formation -- 2.1 Discovery -- 2.1.1 Static Configuration -- 2.1.2 Centralized Directory -- 2.1.3 Using the Domain Name Service -- 2.1.4 Member Propagation Techniques with Initial Member Discovery -- 2.2 Overlay Formation -- 2.2.1 Creating an Overlay Link -- 2.3 Topology Selection -- 2.3.1 Random Mesh Formation -- 2.3.2 Tiered Formation -- 2.3.3 Ordered Lattices -- 3 Application-Layer Multicast -- 3.1 General Multicast Techniques -- 3.1.1 Group Addressing -- 3.1.2 Group Maintenance -- 3.1.3 Message Forwarding Scheme -- 3.1.4 Multicast Routing -- 3.1.5 Secure Multicast -- 3.1.6 Reliable Multicast -- 3.1.7 Multicast Flow and Congestion Control -- 3.2 Network-Layer Multicast"IP Multicast -- 3.2.1 Problems with IP-Layer Multicast -- 3.3 Application-Layer Multicast -- 3.3.1 Broadcast Mechanisms in Peer-to-Peer Networks -- 3.3.2 Multicast in Peer-to-Peer Overlays -- 4 File-Sharing Applications -- 4.1 File-Sharing Overview -- 4.1.1 Disk Space Management -- 4.1.2 File Indexing -- 4.1.3 File Search/Retrieval -- 4.1.4 Access Control and Security -- 4.1.5 Anonymous File Retrieval -- 4.1.6 Search Acceleration Techniques -- 4.1.7 Digital Rights Management -- 4.2 Usage of File-Sharing Applications -- 4.2.1 Limitations of File-Sharing Applications -- 4.3 Preventing Unauthorized File Sharing -- 4.3.1 Firewall-Based Techniques -- 4.3.2 Asset Inventory -- 4.3.3 Port Scanning -- 4.3.4 Usage-Based Rate Control -- 4.3.5 Malicious Participation -- 5 File Storage Service -- 5.1 Handle Management -- 5.2 Retrieving Files with Handles -- 5.2.1 Circular Ring Routing -- 5.2.2 Plaxton Scheme -- 5.2.3 CAN Routing Algorithm -- 5.2.4 Modified Network Routing Schemes -- 5.2.5 Modified Broadcast -- 5.3 Miscellaneous Functions -- 5.3.1 Access Control -- 5.3.2 Availability and Reliability -- 5.4 Usage Scenarios -- 5.4.1 Distributed File Systems -- 5.4.2 Anonymous Publishing -- 6 Data Backup Service -- 6.1 The Traditional Data Management System -- 6.2 The Peer-to-Peer Data Management System -- 6.2.1 The Backup/Restore Manager -- 6.2.2 The Peer Searcher -- 6.2.3 The File Searcher -- 6.2.4 The Properties Manager -- 6.2.5 The Data Manager -- 6.2.6 The Schedule Manager -- 6.3 Security Issues -- 6.4 Hybrid Data Management Approach -- 6.5 Feasibility of Peer-to-Peer Data Backup Service -- 7 Peer-to-Peer Directory System -- 7.1 LDAP Dir.…”
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  4. 224

    Microbiological sensors for the drinking water industry

    Published 2018
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  5. 225

    Creating E-Learning Games with Unity. by Horachek, David

    Published 2014
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  6. 226

    Android Sensor Programming By Example. by Nagpal, Varun

    Published 2016
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  7. 227
  8. 228

    Automatic Modeling and Fault Diagnosis of Timed Concurrent Discrete Event Systems : Automatische Modellierung und Fehlerdiagnose Zeitlicher Nebenläufiger Ereignisdiskreter Systeme.... by Schneider, Stefan

    Published 2015
    Table of Contents: “…3.3.3 Precision and Completeness Properties3.3.4 Identification Parameters; 3.4 Timed Distributed Modeling; 3.5 Identification of Timed Distributed Models; 3.5.1 Timed Distributed Identification Approach; 3.5.2 Precision and Completeness Properties; 3.5.3 Discussion on Shared I/Os; 3.6 Identification of Timed Distributed BMS Models; 3.6.1 Data Collection; 3.6.2 Timed Distributed Identification; 4 Partitioning of DES Models; 4.1 Preliminaries; 4.2 Causal Partitioning; 4.2.1 Distance and Causality; 4.2.2 Causal Partitioning Algorithm; 4.3 Optimal Partitioning; 4.3.1 Optimization Approach.…”
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  9. 229

    Combinatorial and Computational Mathematics : Present and Future.

    Published 2001
    Table of Contents: “…2 LIST OF APPLICABLE MATHEMATICS IN SOCIAL SCIENCE3 SOCIAL WELFARE FUNCTIONS (SWF); 4 PROSPECTS; 5 OPEN PROBLEMS; References; Twelve Views of Matroid Theory; INTRODUCTION; 1 LINEAR DEPENDENCE WITHOUT SCALARS; 2 BASIS EXCHANGE PROPERTIES; 3 GEOMETRIC LATTICES; 4 GRAPH THEORY WITHOUT VERTICES; 5 GRAPH THEORY AND LEAN LINEAR ALGEBRA; 6 VARIETIES OF FINITE MATROIDS; 7 SECRET-SHARING MATROIDS; 8 GREEDY ALGORITHMS, MATROID INTERSECTION, AND MATROID PARTITION; 9 MATRIX MULTIPLICATION AND THE CAUCHY-BINET IDENTITY; 10 BASIS GENERATING FUNCTIONS AND THE MATRIX-TREE THEOREM…”
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  12. 232

    Networks-on-chip : from implementations to programming paradigms by Ma, Sheng, Huang, Libo, 1976-, Lai, Mingche, Shi, Wei

    Published 2014
    Table of Contents: “…3.2.1 DVC scheme3.2.2 Congestion avoidance scheme; 3.3 Multiple-port shared buffer with congestion awareness; 3.3.1 DVC scheme among multiple ports; 3.3.2 Congestion avoidance scheme; 3.4 DVC router microarchitecture; 3.4.1 VC control module; 3.4.2 Metric aggregation and congestion avoidance; 3.4.3 VC allocation module; 3.5 HiBB router microarchitecture; 3.5.1 VC control module; 3.5.2 VC allocation and output port allocation; 3.5.3 VC regulation; 3.6 Evaluation; 3.6.1 DVC router evaluation; 3.6.2 HiBB router evaluation; 3.7 Chapter summary; References.…”
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  13. 233

    Deep learning with Python : a hands-on introduction by Ketkar, Nikhil

    Published 2017
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  14. 234

    Deep learning for dummies by Mueller, John, 1958-, Massaron, Luca

    Published 2019
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  15. 235

    Robust and error-free geometric computing by Eberly, Dave

    Published 2020
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  16. 236

    Mastering D3.js. by Castillo, Pablo Navarro

    Published 2014
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  17. 237

    Advanced wireless networks : technology and business models by Glisic, Savo G.

    Published 2016
    Table of Contents: “…16.1 Introduction 523 -- 16.2 Layering as Optimization Decomposition 524 -- 16.3 Cross-Layer Optimization 533 -- 16.4 Optimization Problem Decomposition Methods 543 -- References 554 -- 17 Network Information Theory 557 -- 17.1 Capacity of Ad Hoc Networks 557 -- 17.2 Information Theory and Network Architectures 569 -- 17.3 Cooperative Transmission in Wireless Multihop Ad Hoc Networks 577 -- References 584 -- 18 Stability of Advanced Network Architectures 585 -- 18.1 Stability of Cooperative Cognitive Wireless Networks 585 -- 18.2 System Model 586 -- 18.4 Optimal Control Policy 592 -- 18.5 Achievable Rates 594 -- 18.6 Stabilizing Transmission Policies 598 -- References 605 -- 19 Multi-Operator Spectrum Sharing 607 -- 19.1 Business Models for Spectrum Sharing 607 -- 19.2 Spectrum Sharing in Multi-hop Networks 638 -- References 656 -- 20 Large Scale Networks and Mean Field Theory 659 -- 20.1 MFT for Large Heterogeneous Cellular Networks 659 -- 20.2 Large Scale Network Model Compression 664 -- 20.3 Mean Field Theory Model of Large Scale DTN Networks 668 -- 20.4 Mean Field Modeling of Adaptive Infection Recovery in Multicast DTN Networks 674 -- 20.5 Mean Field Theory for Scale-Free Random Networks 701 -- 20.6 Spectrum Sharing and MFT 709 -- 20.7 Modeling Dynamics of Complex System 711 -- Appendix A.20 Iterative Algorithm to Solve Systems of Nonlinear ODEs (DiNSE-Algorithm) 721 -- Appendix B.20 Infection Rate of Destinations for DNCM 722 -- Appendix C.20 Infection Rate for Basic Epidemic Routing 722 -- References 722 -- 21 mmWave Networks 726 -- 21.1 mmWave Technology in Subcellular Architecture 726 -- 21.2 Microeconomics of Dynamic mmWave Networks 737 -- References 747 -- 22 Cloud Computing in Wireless Networks 750 -- 22.1 Technology Background 750 -- 22.2 System Model 752 -- 22.3 System Optimization 756 -- 22.4 Dynamic Control Algorithm 758 -- 22.5 Achievable Rates 761 -- 22.6 Stabilizing Control Policies 763 -- References 769 -- 23 Wireless Networks and Matching Theory 771.…”
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  20. 240

    AI and the future of banking by Boobier, Tony, 1956-

    Published 2020
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