首页--工业技术论文--无线电电子学、电信技术论文--无线通信论文--移动通信论文

Performance Evaluation of Campus Mobility Model in Mobile Ad Hoc Networks

TABLE OF CONTENTS第8-11页
LIST OF FIGURES第11-12页
LIST OF TABLES第12-13页
ABSTRACT第13页
摘要第14-15页
ACKNOWLEDGEMENT第15-16页
LIST OF ABREVIATION第16-17页
CHAPTER 1:GENERAL INTRODUCTION第17-29页
    1.1 Background第17-20页
    1.2 Introduction第20-21页
    1.3 Purpose and significance of the project第21-23页
    1.4 Related work第23-24页
    1.5 Campus mobility model第24-27页
    1.6 Objectives of the project第27页
    1.7 Project deliverables第27页
    1.8 Publication Generated from Thesis Work第27页
    1.9 Organisation of the project第27-29页
CHAPTER 2:MANET NODE MOBILITY MODEL ANALYSIS第29-37页
    2.1 A Mobile Ad Hoc Network第29页
    2.2 Classic mobile model analysis第29-33页
        2.2.1 Random walk mobility model第29-31页
        2.2.2 Random waypoint mobility model第31-32页
        2.2.3 Random direction mobility model第32-33页
    2.3 Importance of proposing campus mobility models as realistic one第33-36页
    2.4 Summary of chapter 2第36-37页
CHAPTER 3:DESIGNING CAMPUS MANET MOBILITY ALGORITHM第37-51页
    3.1 Brief campus mobility description第37-38页
    3.2 Obstacle Construction第38-39页
    3.3 The campus MANET mobility model第39页
    3.4 The study of campus MANET mobile node第39-41页
        3.4.1 Node classification and the mobility rules第39页
        3.4.2 Campus concentration area division第39-40页
        3.4.3 Node distribution and variation analysis第40-41页
        3.4.4 The mobility analysis method of the node第41页
    3.5 Campus MANET node mobility modeling第41-49页
        3.5.1 Nodes classification and the initial distribution第42-43页
        3.5.2 Voronoi Graph and path第43-45页
        3.5.3 The selection of the node destination第45-48页
            3.5.3.1 Dijkstra shortest path algorithm第47-48页
        3.5.4 The determination of the mobility way of the node第48-49页
            3.5.4.1 Destination chosen for the building第48页
            3.5.4.2 Destination choice for other buildings第48-49页
    3.6 Campus MANET node location mobility choice and update第49-50页
        3.6.1 The node chooses the building for destination第49页
        3.6.2 The node chooses other buildings for destination第49-50页
    3.7 Summary of chapter 3第50-51页
CHAPTER 4:SIMULATION RESULTS AND PERFORMANCE ANALYSIS第51-70页
    4.1 Simulations第51-52页
    4.2 The simulation environment第52-53页
    4.3 Physical characteristics第53-54页
        4.3.1 The average space related degrees第53页
        4.3.2 The average relative velocity第53-54页
    4.4 The connectivity network topology第54页
        4.4.1 The average neighbor degree第54页
        4.4.2 The average duration of the link第54页
        4.4.3 The average on-off link rate第54页
    4.5 Analysis of the Routing protocol performance第54-55页
        4.5.1 Routing overhead第54页
        4.5.2 Packet delivery rate第54-55页
    4.6 The simulation results第55-69页
        4.6.1 Analysis of the model physical properties第55-56页
            4.6.1.1 The average space related degree第55-56页
            4.6.1.2 The average relative velocity第56页
        4.6.2 Analysis of the connectivity network topology第56-59页
            4.6.2.1 The average neighbor degree第56-58页
            4.6.2.2 The average duration of the link第58页
            4.6.2.3 The average on-off link rate第58-59页
        4.6.3 Analysis of the Routing Protocol第59-69页
            4.6.3.1 The study of AODV Routing Protocol第59-66页
                4.6.3.1.1 Definition of AODV第59页
                4.6.3.1.2 AODV importance in MANET第59-61页
                4.6.3.1.3 AODV Routing Protocol第61-65页
                4.6.3.1.4 AODV message formats第65-66页
            4.6.3.2 Routing overhead第66-67页
            4.6.3.3 Packet delivery ratio第67-69页
    4.7 Summary of the chapter第69-70页
CHAPTER 5:CONCLUSION AND RECOMMANDATIONS第70-72页
REFERENCES第72-77页
APPENDIX第77-81页
CHINESE ABSTRACT第81-84页

论文共84页,点击 下载论文
上一篇:海洛因对仔鼠和母鼠肺抗氧化酶活性、组织结构及相关活性物质表达的影响
下一篇:NBEAL1基因与蛋白功能的初步研究