Description |
xii, 121 pages : illustrations ; 24 cm |
Series |
SpringerBriefs in computer science |
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SpringerBriefs in computer science.
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Contents |
Contents note continued: 4.3.Distributed Power Control for Femtocell Utility Maximization and Macrocell SINR Balancing -- 4.3.1.Distributed Pareto-Optimal SINR Assignment -- 4.3.2.Distributed Algorithm for Femtocell Utility Maximization and Macrocell SINR Balancing -- 4.3.3.Advantages of FUM-MSB Algorithm -- 4.4.Illustrative Results -- References -- 5.Joint Power and Subchannel Allocation in Heterogeneous OFDMA Small-Cell Networks -- 5.1.System Model and Problem Formulation -- 5.2.An Iterative Approach to Joint Power and Subchannel Allocation -- 5.2.1.Feasibility and Initial Feasible Allocation -- 5.2.2.Optimal Subchannel Assignment for Fixed Power Allocation -- 5.2.3.Optimal Power Allocation for Fixed Subchannel Assignment -- 5.3.Proposed Joint Power and Subchannel Allocation Algorithms with Macrocell Total Throughput Protection -- 5.3.1.Centralized SCA-based Power Allocation with AGM Approximation -- 5.3.2.Distributed SCA-based Power Allocation with Logarithmic Approximation -- |
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Contents note continued: 5.3.3.Distributed SCA-based Power Allocation with D.C. Approximation -- 5.4.Illustrative Results -- References -- 6.Distributed Resource Allocation in OFDMA Cognitive Small-Cell Networks with Spectrum-Sharing Constraints -- 6.1.System Model and Problem Formulation -- 6.2.Joint Subchannel and Power Allocation for Throughput Maximization in Cognitive Femtocell Networks -- 6.2.1.Optimal Design with Spectrum-Sharing Constraints -- 6.2.2.Distributed Implementation -- 6.3.A Dual Approach to Power-Efficient Resource Allocation -- 6.4.Reduced-Complexity Schemes for Throughput Maximization -- 6.5.Performance Evaluation -- 6.5.1.Asymptotic Complexity Analysis -- 6.5.2.Illustrative Results |
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Contents note continued: References -- 3.Distributed Interference Management in Heterogeneous CDMA Small-Cell Networks -- 3.1.System Model and Assumptions -- 3.2.Distributed Joint Power and Admission Control Algorithms -- 3.2.1.QoS Guarantee for MUEs -- 3.2.2.Dynamic Pricing, Power Adaptation and Admission Control for FUEs -- 3.3.Practical Implementation Issues and Further Extensions -- 3.3.1.Communication Overhead of Proposed Algorithms -- 3.3.2.Improving Efficiency of Equilibrium Solutions -- 3.4.Illustrative Results -- References -- 4.Distributed Pareto-Optimal Power Control for Utility Maximization in Heterogeneous CDMA Small-Cell Networks -- 4.1.System Model and Problem Formulation -- 4.2.Distributed Power Control for Joint Utility Maximization with Macrocell QoS Protection -- 4.2.1.Pareto-Optimal SINR Boundary and Approximate Solution via Log-Barrier Penalty Method -- 4.2.2.Distributed Algorithm for Globally Maximized Joint Utility -- |
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Machine generated contents note: 1.Dense Small-Cell Networks: Motivations and Issues -- 1.1.Mobile Data Traffic and Indoor Coverage Challenges -- 1.2.Extreme Network Densification Solution -- 1.2.1.Frequency Reuse Principle and Cellular Wireless Networks -- 1.2.2.Small-Cell Heterogeneous Network Deployment -- 1.2.3.Technical Challenges in Small Cells -- 1.3.Structure of the Brief -- References -- 2.Architectures and Interference Management for Small-Cell Networks -- 2.1.Requirements and Reference Model for Small-Cell Network Architectures -- 2.2.Small-Cell Architectures in Wireless Network Standards -- 2.2.1.3GPP UMTS Small-Cell Architecture -- 2.2.2.3GPP LTE Small-Cell Architecture -- 2.2.3.3GPP2 CDMA2000 1x Small-Cell Architecture -- 2.2.4.Air Interfaces: CDMA vs. OFDMA -- 2.3.Interference Management in Small-Cell Networks -- 2.3.1.Interference Scenarios -- 2.3.2.Power Control for CDMA-Based Wireless Networks -- 2.3.3.Joint Subchannel-Power Allocation in OFDMA Networks -- |
Bibliography |
Includes bibliographical references |
Subject |
Cell phone systems.
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Electric interference.
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Wireless LANs.
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Mobile communication systems.
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Wireless communication systems.
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Author |
Le, Ngoc Tho, 1954- author
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LC no. |
2014932974 |
ISBN |
331904821X |
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9783319048215 |
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