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Improving Energy Efficiency in Heterogeneous Network

ABSTRACT第4页
摘要第5-13页
Chapter 1 INTRODUCTION第13-21页
    1.1 Background Knowledge第13-15页
    1.2 Statement of the Problem第15-17页
    1.3 Previous Works第17-19页
    1.4 Purpose and Objectives第19页
    1.5 Principal Contributions and Organization第19-21页
Chapter 2 RESEARCH ON KEY TECHNOLOGIES FOR HETNET MIMO SYSTEM第21-39页
    2.1 Overview of Wireless Network第21-22页
    2.2 Evolution of Cellular Network第22-25页
    2.3 Heterogeneous Network and Small Cells第25-28页
    2.4 Multiple Antenna System第28-30页
    2.5 Attaining Higher Energy Efficiency第30-39页
        2.5.1 Game Theory第35-39页
Chapter 3 PROPOSED ACTIVITY MANAGEMENT ALGORITHM FOR ENERGYEFFICIENCY第39-60页
    3.1 Problem Definition第39-43页
        3.1.1 Energy Consumption in Wireless第39-41页
        3.1.2 Power Control第41页
        3.1.3 System Model Activity第41-43页
    3.2 Activity Management Algorithm第43-47页
        3.2.1 Data Rate Model第43-45页
        3.2.2 Power Consumption Model第45-47页
    3.3 Bargaining Cooperative Game第47-54页
        3.3.1 BCG between MBS and SNBs第47-48页
        3.3.2 Utility Function Design第48-50页
        3.3.3 B BCG-Based Optimal Power Coordination Problem第50页
        3.3.4 Problem Simplification第50-54页
    3.4 BCG Analysis and Power Coordination第54-60页
        3.4.1 Overall Flow of Implementation of BCG Framework第54-55页
        3.4.2 Closed-Form Power Coordination Solution for MBSo第55-57页
        3.4.3 Closed-Form Power Coordination Solution for PBSm第57-60页
Chapter 4 SIMULATION RESULTS第60-70页
    4.1 Illustration of User Equipment Rate第61-63页
    4.2 Illustration of Utility Function第63-64页
    4.3 Convergence Verification第64-65页
    4.4 Algorithm Characteristics第65-67页
    4.5 Improved Performance第67-68页
    4.6 Performance of Simplified Algorithm第68-70页
Chapter 5 CONCLUSION第70-71页
REFERENCES第71-78页
ACKNOWLEDGEMENT第78页

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