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面向无线躯感网的实时心电生物特征安全算法研究

摘要第5-7页
Abstract第7-8页
Chapter 1 Introduction第16-26页
    1.1 Introduction to Wireless Body Sensor Networks第16-18页
    1.2 Motivation and Research Challenges第18-20页
    1.3 Research Objectives第20-21页
    1.4 Main Contributions第21-23页
    1.5 Research Methodology第23页
    1.6 Scope of Research and Organization of Thesis第23-26页
Chapter 2 Security in Wireless Body Sensor Networks第26-44页
    2.1 Introduction第26-31页
        2.1.1 Overview第26-28页
        2.1.2 WBSNs for Healthcare Applications第28-31页
    2.2 Challenges in implementing WBSNs第31-33页
    2.3 Security Threats in WBSNs第33-34页
    2.4 Security Requirements in WBSNs第34-35页
    2.5 Laws and Regulations第35-37页
    2.6 Cryptographic Security for WBSNs第37-41页
        2.6.1 Symmetric Key Encryption第38-39页
        2.6.2 Asymmetric Key Encryption第39-40页
        2.6.3 Bottlenecks of Cryptographic Techniques第40-41页
    2.7 Biometric Security for WBSNs第41-43页
    2.8 Conclusions第43-44页
Chapter 3 SRR-based Biometric Security for WBSNs第44-65页
    3.1 Introduction第44-46页
    3.2 Wearable System for Physiological Signal Collection第46-47页
    3.3 SRR-Based Security Algorithm第47-50页
    3.4 Data Authentication Function (DAF)第50-54页
    3.5 Performance Analysis第54-59页
        3.5.1 Transmission Time第56-57页
        3.5.2 Energy Consumption第57-58页
        3.5.3 Power Utilization第58-59页
    3.6 Experimental Results and Discussion第59-63页
    3.7 Conclusions and Future Work第63-65页
Chapter 4 IPI-based Biometric Security for WBSNs第65-88页
    4.1 Introduction第65-68页
    4.2 Related Work第68-71页
    4.3 Wearable Platform for ECG Measurement第71-72页
    4.4 Method and Material第72-80页
        4.4.1 RBSs Generation Procedure第72-75页
            4.4.1.1 Noise Removal and R-Peak Computation Process第72-73页
            4.4.1.2 Finite Monotonic Increasing Sequences Generation第73页
            4.4.1.3Cyclic Block Encoding Technique第73页
            4.4.1.4 Binary Feature Extraction and Concatenation第73-75页
        4.4.2 IPI-Based Security Algorithm第75-76页
        4.4.3 Source-Destination Communication Model第76-78页
        4.4.4 Randomness and Distinctiveness for RBSs第78-80页
            4.4.4.1 Testing Procedure for Randomness第79-80页
            4.4.4.2 Testing Procedure for Distinctiveness第80页
    4.5 Experimental Results and Discussion第80-87页
        4.5.1 Randomness Analysis of IPI-Based RBSs第82-84页
        4.5.2 Distinctiveness Analysis of IPI-Based RBSs第84-86页
        4.5.3 Resource Consumption Analysis of IPI-Based Security Algorithm第86-87页
    4.6 Conclusion and Future Work第87-88页
Chapter 5 Fuzzy-Vault Based Security for WBSNs第88-102页
    5.1 Introduction第88-89页
    5.2 Related Work第89-92页
    5.3 Efficient Fuzzy Vault based Security Algorithm (EFVSA)第92-95页
    5.4 System Implementation for WBSNs第95-97页
    5.5 Experimental Results and Discussion第97-100页
    5.6 Conclusions and Future Work第100-102页
Chapter 6 Comparisons between SRR/IPI-based and Fuzzy-vault based SecurityAlgorithms第102-118页
    6.1 Introduction第102-104页
    6.2 Related Work第104-106页
    6.3 Sever-Dependent Communication第106-109页
        6.3.1 SRR-based Biometric Security Algorithm第106-107页
        6.3.2 IPI-based Biometric Security Algorithm第107-109页
    6.4 Sever-Independent Communication第109-110页
    6.5 Experimental Results and Discussion第110-115页
    6.6 Conclusions and Future Work第115-118页
Chapter 7 Thesis conclusion and Future Work第118-122页
    7.1 Concluding Remarks第118-121页
    7.2 Future Research Work第121-122页
References第122-132页
Acknowledgement第132-133页
Author's Biography第133-135页

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