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Error Resilience in Scalable Video Coding Extension of H.264/AVC Standard

Abstract第6-7页
摘要第8-10页
Acknowledgements第10-11页
Dedication第11-15页
List of Tables第15-16页
List of Figures第16-19页
List of Abbreviations第19-21页
Chapter 1:Introduction第21-31页
    1.1 Background第21-23页
    1.2 Research Motivations第23-24页
    1.3 Research Objectives第24-25页
    1.4 Scope of Research第25页
    1.5 Research Contributions第25-28页
    1.6 Dissertation Outline第28-31页
Chapter 2:Literature Reviews第31-47页
    2.1 The Scalable Video Coding Extension of H.264/AVC第31-39页
        2.1.1 SVC Functionalities第33-34页
        2.1.2 SVC Architecture第34-39页
            2.1.2.1 Intra-Layer Coding第36页
            2.1.2.2 Inter-Layer Coding第36-37页
            2.1.2.3 Hierarchical Prediction Structure第37-38页
            2.1.2.4 Flexible Transport Interface第38-39页
    2.2 Error Control Techniques第39-40页
    2.3 Error Control Tools Adopted in SVC第40-45页
        2.3.1 Quality Layer Integrity Check Signaling第41页
        2.3.2 Redundant Picture Property Signaling第41页
        2.3.3 Temporal Level Zero Index Signaling第41页
        2.3.4 LA-RDO based Intra MB Refresh第41-42页
        2.3.5 Error Concealment第42-45页
            2.3.5.1 Picture Copy (PC) Error Concealment第43页
            2.3.5.2 Temporal Direct (TD) Error Concealment for B Pictures第43-44页
            2.3.5.3 Motion Copy (MC) Error Concealment for Key Pictures第44页
            2.3.5.4 Base Layer Skip (BLSkip) Error Concealment第44页
            2.3.5.5 Reconstruction Base Layer Up-sampling (RU) Error Concealment第44-45页
    2.4 Chapter Summary第45-47页
Chapter 3:Utilizing Motion Information with Redundant Key Pictures第47-61页
    3.1 Introduction第48-49页
    3.2 Related Works第49-50页
    3.3 Redundant Picture in SVC第50页
    3.4 Key Picture Error Concealment第50-51页
    3.5 Proposed Method第51页
    3.6 Simulation Conditions第51-53页
    3.7 Simulation Results第53-59页
    3.8 Chapter Summary and Conclusions第59-61页
Chapter 4:Multi-Layer Lagrange Multiplier in LA-RDO第61-87页
    4.1 Introduction第62页
    4.2 Related Works第62-64页
    4.3 Multi-Layer Lagrange Multiplier Selection第64-67页
    4.4 Loss-aware Rate Distortion Optimized MB Mode Decision第67-71页
        4.4.1 Distortion Calculation第68-71页
        4.4.2 Lagrange Multiplier Selection第71页
    4.5 Proposed Method第71-73页
    4.6 Simulation Conditions第73-74页
    4.7 Results for Low Delay Application第74-79页
    4.8 Results for High Delay Application第79-84页
    4.9 Chapter Summary and Conclusions第84-87页
Chapter 5:Efficient Use of Residual Prediction with Error Resilience第87-109页
    5.1 Introduction第88页
    5.2 Related Works第88-89页
    5.3 Overview of Residual Prediction in ESS第89-92页
    5.4 Proposed Method第92-99页
        5.4.1 Derivation of MB Mode Complexity第94-95页
        5.4.2 Derivation of MB Mode in Non Homogenous Region第95-96页
        5.4.3 Error Concealment in ESS第96-99页
    5.5 Simulation Results and Discussions第99-108页
    5.6 Chapter Summary and Conclusions第108-109页
Chapter 6:Exploiting Block Merging Technique for Error Resilience第109-125页
    6.1 Introduction第110页
    6.2 Related Works第110-111页
    6.3 Overview of MB Mode Prediction in ESS第111-112页
    6.4 The Proposed Method第112-117页
    6.5 Simulation Results and Related Discussions第117-124页
    6.6 Chapter Summary and Conclusions第124-125页
Chapter 7:Conclusions and Future Works第125-129页
    7.1 Research Contributions第125-127页
    7.2 Future Work第127-129页
Bibliography第129-140页
List of Publications第140页

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