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基于公共控制信道的认知无线电Ad-Hoc网络MAC和路由协议设计

Abstract第5-7页
摘要第9-19页
List of Abbreviations第19-21页
1 Introduction第21-31页
    1.1 Background of Cognitive Radio第21-26页
        1.1.1 Traditional Radio第22页
        1.1.2 Software Defined Radio第22-23页
        1.1.3 Cognitive Radio第23-24页
        1.1.4 Cognitive Radio Ad-Hoc Networks(CRAHNs)第24页
        1.1.5 Applications of CRAHNs第24-26页
    1.2 Motivation第26-27页
    1.3 Problem Statement第27页
    1.4 Summary of Research Contributions第27-29页
    1.5 Organization of the Dissertation第29-31页
2 State-of-the-Art:Literature Review and Current Solutions第31-49页
    2.1 Introduction第31页
    2.2 Distributed MAC Protocols第31-38页
        2.2.1 IEEE 802.11 DCF第32-34页
        2.2.2 Distributed Multi-channel MAC protocols第34-35页
        2.2.3 Distributed Cognitive MAC protocols第35-37页
        2.2.4 Significance of CCC design for MAC in CRAHNs第37-38页
    2.3 Existing CCC Based Cognitive MAC Protocols第38-42页
        2.3.1 Survey on In-Band CCC Based CR-MAC Protocols第39-41页
        2.3.2 Challenges with In-Band CCC Based CR-MAC Protocols第41页
        2.3.3 Out-of-band CCC Based CR-MAC Protocols第41-42页
        2.3.4 Challenges with out-of-band CCC Based CR-MAC Protocols第42页
    2.4 Distributed Routing Protocols第42-45页
        2.4.1 Traditional AODV Protocol第43-44页
        2.4.2 Cognitive AODV Routing Protocol第44-45页
        2.4.3 Significance of CCC design for Routing in CRAHNs第45页
    2.5 Existing CCC Based Cognitive Routing Protocols第45-48页
        2.5.1 In-Band CCC Based CR-Routing Protocols第46-47页
        2.5.2 Out-of-Band CCC Based CR-Routing Protocols第47-48页
    2.6 Summary第48-49页
3 Low rate energy efficient CCC based AODV routing protocol for CRAHNs第49-69页
    3.1 Introduction第49-50页
    3.2 Related Work第50-54页
        3.2.1 Unlicensed ISM Radio Signal Propagation Range Comparisons第51-54页
    3.3 Overview of Low rate CCC based CR-AODV routing protocol第54页
    3.4 Operation of low rate Energy Efficient CCC Based CR-AODV第54-62页
        3.4.1 Energy efficient channel-route Selection第54-56页
        3.4.2 Channel-Route Optimization第56-58页
        3.4.3 Channel-Route Maintenance第58-59页
        3.4.4 Channel-Route Failures第59-61页
        3.4.5 Spectrum mobility Packet Buffering Mechanisms第61-62页
    3.5 Performance Analysis第62-68页
        3.5.1. Simulation Setup第62-64页
        3.5.2. Simulation Results and Analysis第64-68页
    3.6 Summary第68-69页
4 Hybrid CCC based MAC protocol for CRAHNs第69-84页
    4.1 Introduction第69页
    4.2 Related Work第69-71页
    4.3 Operation of Hybrid CCC Based MAC Protocol第71-79页
        4.3.1 System Model第71-72页
        4.3.2 Network Setup and Neighbor Discovery第72-74页
        4.3.3 Virtual Carrier Sensing and CR Node Synchronization第74-75页
        4.3.4 Incumbent Protection第75-79页
    4.4 Performance Evaluation第79-83页
        4.4.1 Experimental Results and Analysis第79-83页
    4.5 Summary第83-84页
5 Energy-efficient hybrid CCC MAC for CRAHNs with directional antennas第84-110页
    5.1 Introduction第84-86页
    5.2 Related work第86-89页
    5.3 Operation of Hybrid CCC-CR-MAC with Directional antenna第89-102页
        5.3.1 System Model第89-91页
        5.3.2 Synchronous CCF第91-93页
        5.3.3 Asynchronous DCF第93-95页
        5.3.4 Directional Antenna-Based DATA/ACK第95页
        5.3.5 Data Energy Conservation第95-97页
        5.3.6 Interference Suppression第97-98页
        5.3.7 Spectrum Mobility and PU Receiver Protection第98-100页
        5.3.8 Power Control Algorithm第100-102页
    5.4 Performance Evaluation第102-109页
    5.5 Summary第109-110页
6 Hybrid CCC-AODV routing protocol for CRAHNs with directional Antennas第110-125页
    6.1 Introduction第110-111页
    6.2 Related Work第111-113页
    6.3 Operation of Hybrid-CCC Based AODV with Directional antennas第113-119页
        6.3.1 Hybrid CCC for CR-AODV Routing Protocol第113-114页
        6.3.2 Channel-Route Discovery第114-115页
        6.3.3 Directional DATA Transmission第115-117页
        6.3.4 PU Receiver Protection第117-119页
    6.4 Performance Evaluation第119-124页
        6.4.1 Performance Results and Discussions第121-124页
    6.5 Summary第124-125页
7 Conclusion and Future Work第125-127页
    7.1 Conclusion第125-126页
    7.2 Future Work第126-127页
Abstract of Innovation Points第127-129页
References第129-141页
Published Academic Papers during PhD Period第141-142页
Acknowledgement第142-143页
About the Author第143-145页

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