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LTE-A网络中的中继和协作多点传输组合

ABSTRACT第4-6页
摘要第7-11页
Abbreviations第11-13页
CHAPTER 1 INTRODUCTION第13-19页
    1.1 Background第14-16页
    1.2 Problem Description第16-17页
    1.3 Organization of our Work第17-19页
CHAPTER 2 OVERVIEW ON THE RESEARCH WORK第19-31页
    2.1 LTE-Advanced architecture第20-22页
    2.2 Channel Capacity Theory第22-23页
        2.2.1 Mutual Information第22页
        2.2.2 Gaussian channel capacity theory第22-23页
    2.3 Multi-Input and Multi-Output第23-31页
        2.3.1 Single-user MIMO system model第23-24页
        2.3.2 MIMO Capacity theory第24-26页
        2.3.3 Multiplexing and diversity第26-28页
        2.3.4 MIMO MAC, MIMO BC and the duality第28-31页
CHAPTER 3 RELAYING TECHNIQUE IN LTE-ADVANCED NETWORK第31-51页
    3.1 The relay channel第31-32页
    3.2 Loop interference mitigation technique第32-34页
    3.3 Cooperative relaying in LTE-A system第34-45页
        3.3.1 AF and DF schemes第34-35页
        3.3.2 Half duplex relaying mode第35-40页
        3.3.3 Full Duplex relaying mode第40-43页
        3.3.4 Numerical results第43-45页
    3.4 Multi-antenna receiver technique第45-51页
CHAPTER 4 COORDINATED MULTI-POINT TRANSMISSION第51-73页
    4.1 Coordinated Multi-Point Transmission background第51-54页
    4.2 System model第54-55页
    4.3 Pre-coding during downlink scheme第55-60页
    4.4 Capacity enhancement in the two cells case study第60-73页
        4.4.1 Conventional network case第60-62页
        4.4.2 Base station coordination in the two-cell case第62-66页
        4.4.3 Numerical results第66-73页
CHAPTER 5 RELAYING AND COORDINATED MULTI-POINTTRANSMISSION HYBRID SCHEME第73-91页
    5.1 Cooperative relaying technique第73-77页
    5.2 System model architecture第77-83页
    5.3 Performance evaluation第83-91页
        5.3.1 Four scenarios and simulation assumption第83-85页
        5.3.2 Numerical results第85-91页
CHAPTER 6 CONCLUSIONS AND PERSPECTIVES第91-93页
REFERENCE第93-107页
ACKNOWLEDGEMENT第107-109页
作者攻读学位期间发表的学术论文目录第109页

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