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Energy Efficient Adaptive Request Medium Access Control Protocol for Wireless Sensor Networks

Abstract第5-6页
Nomenclature第12-13页
Chapter 1 Introduction第13-19页
    1.1 Background第13-14页
    1.2 Problem Statement第14-15页
    1.3 Research Objective第15页
    1.4 Scope of Research第15-16页
    1.5 Significance of Research第16页
    1.6 My Contribution第16页
    1.7 Thesis Outline第16-19页
Chapter 2 Wireless Sensor Networks Overview第19-31页
    2.1 Wireless Signal Node Architecture第19-20页
    2.2 Applications of Wireless Sensor Networks第20-21页
    2.3 Wireless Architecture第21页
    2.4 Protocol Stack第21-22页
    2.5 Medium Access Control第22-23页
    2.6 Recharging Nodes through Energy Harvesting (EH)第23-24页
    2.7 EH-WSN Problems第24页
    2.8 Trade-offs between Energy and Data Communication第24-27页
        2.8.1 Energy consumption during transmission第25页
        2.8.2 Energy consumption during reception第25-27页
    2.9 Energy aware access priority第27-29页
    2.10 Chapter Summary第29-31页
Chapter 3 Wireless Medium Access Protocols第31-41页
    3.1 Contention Based MAC Protocol第31页
    3.2 Flow Aware Medium Access Protocol第31-32页
        3.2.1 Working of FLAMA第32页
        3.2.2 Synchronization in FLAMA:第32页
    3.3 Schedule Based MAC Protocols第32-33页
    3.4 MAC Protocol Classification第33-34页
    3.5 Different MAC Protocols for WBANS第34-39页
        3.5.1 IEEE 802.15.4 MAC Protocol第34-35页
        3.5.2 Battery-Aware TDMA Protocol第35页
        3.5.3 Priority Guaranteed MAC Protocol第35-36页
        3.5.4 Energy-Efficient Low Duty Cycle MAC Protocol第36页
        3.5.5 A power-efficient MAC Protocol for WBANs第36-37页
        3.5.6 Energy Efficient Medium Access Protocol第37页
        3.5.7 Body MAC第37-39页
    3.6 Chapter Summary第39-41页
Chapter 4 Proposed AR-MAC MAC Protocol for Wireless Sensor Networks第41-55页
    4.1 Design of Proposed Protocol第41-42页
    4.2 AR-MAC improved Working Algorithm第42-49页
        4.2.1 Improved Back-off Time and Adding ACK Mechanism with GBT第43页
        4.2.2 AR-MAC Algorithm Pseudo Code第43-47页
        4.2.3 AR-MAC Channel Selection Mechanism第47页
        4.2.4 Time Slot Assignment Algorithm of AR-MAC第47-48页
        4.2.5 AR-MAC proposed Frame Format第48-49页
    4.3 AR-MAC Synchronization第49-50页
    4.4 Working Flow of AR-MAC第50-51页
    4.5 AR-MAC Energy Consumption Calculations第51-53页
        4.5.1 Energy Switching第52页
        4.5.2 Energy Receiving第52-53页
        4.5.3 Time out Energy第53页
    4.6 Chapter Summary第53-55页
Chapter 5 AR-MAC Simulation, Analysis and its Comparisons第55-65页
    5.1 AR-MAC Simulation and Comparisons第55页
    5.2 Simulation Settings第55-56页
    5.3 Simulation Environment第56-57页
    5.4 Simulation Results and Analysis第57-61页
        5.4.1 Energy Consumption Analysis and Comparison with Simulation第57页
        5.4.2 Comparison of Delivery Ratio versus Traffic Load with Simulation第57-58页
        5.4.3 Comparison of Average Delay versus Traffic Load with simulation第58-59页
        5.4.4 Comparison of RTS/CTS Overhead versus Traffic Load with simulation ..第59-60页
        5.4.5 Comparison of Energy Consumption versus Traffic Load第60-61页
    5.5 AR-MAC versus Battery-aware TDMA Protocol第61页
    5.6 AR-MAC versus Priority Guaranteed MAC protocol第61-62页
    5.7 AR-MAC versus Power Efficient MAC protocol第62页
    5.8 AR-MAC versus Energy Efficient Medium Access Protocol第62-63页
    5.9 AR-MAC versus Body MAC第63页
    5.10 Chapter Summary第63-65页
Chapter 6 Conclusion and Future Work第65-67页
    6.1 Conclusion第65-66页
    6.2 Future work第66-67页
Bibliography第67-73页
Appendixes第73-80页
攻读硕士学位期间取得的研究成果第80-81页
Acknowledgement第81-82页
附件第82页

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