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Fault Tolerant Job Scheduling and Resource Management Scheme for Economic Based Computational Grid

Abstract第6-7页
CHAPTER 1 INTRODUCTION第13-20页
    1.1 Grid Computing Context第13-14页
    1.2 Grid Computing Environment第14-15页
    1.3 Resource Management and Job Scheduling in Grid Environment第15-16页
    1.4 Economic Based Grid Computational Context第16页
    1.5 Motivation第16-17页
    1.6 Contribution第17-19页
    1.7 Thesis Organization第19-20页
CHAPTER 2 RESOURCE MANAGEMENT AND JOB SCHEDULING第20-43页
    2.1 Introduction第20-22页
        2.1.1 Resource Management Challenges第21-22页
    2.2 Requirements for Grid Resource Management第22-23页
    2.3 Classification for Resource Management System (RMS)第23-25页
        2.3.1 Computational Grid第24页
        2.3.2 Data Grid第24页
        2.3.3 Service Grid第24-25页
    2.4 Resource Management System Taxonomy第25-28页
        2.4.1 Scheduling第27-28页
        2.4.2 Scheduling Policy第28页
    2.5 Previous Work and Survey on Grid Resource Management Systems第28-31页
        2.5.1 Globus: A Toolkit for Grid Computing第28-29页
        2.5.2 Condor: Cycle Stealing Technology for High Throughput Computing第29-30页
        2.5.3 Nimrod/G: A Grid Resource Broker第30-31页
    2.6 The Role of Computational Economy in Resource Management and Job Scheduling第31-42页
        2.6.1 Computational Economy Framework第32-35页
        2.6.2 Economic Models in a Grid Context第35-38页
        2.6.3 Challenges and Requirements for Economic-Based Grids第38-40页
        2.6.4 Grid Architecture for Computational Economy (GRACE)第40-42页
    2.7 Summary第42-43页
Chapter 3 Fault Tolerant Quality Aware Resource Scheduling Strategy in Computational Economy Based Grid Framework第43-67页
    3.1 Introduction第43-45页
    3.2 Grid based Economic Model Context第45-46页
    3.3 The System Model第46-48页
        3.3.1 Application model and Resources entities第46-47页
        3.3.2 Resource Trading Context第47-48页
    3.4 Adaptive Fault-Tolerant Resource Scheduling Architecture第48-51页
        3.4.1 Fault-Tolerance第48-49页
        3.4.2 Related work第49-51页
    3.5 System Architecture第51-61页
        3.5.1 Resource Management Model第51-52页
        3.5.2 Proposed Adaptive Fault-tolerant Scheduling Strategy第52-53页
        3.5.3 Fault-tolerant Approach第53-54页
        3.5.4 Grid Resource Broker第54-61页
    3.6 Experimental Results and Evaluation第61-65页
        3.6.1 Simulation Environment第62-63页
        3.6.2 Simulation Results and Discussion第63-65页
    3.7 Summary第65-67页
CHAPTER 4 SIMULATION AND EXPERIMANTAL RESULTS第67-84页
    4.1 GridSim Simulation Environment第67-69页
        4.1.1 GridSim Entities第68-69页
    4.2 Designing and Implementing Resource Failures into GridSim第69-72页
    4.3 Interaction Protocols among Grid Entities for communication第72-76页
    4.4 Experimental Setup第76-78页
        4.4.1 Characteristics of Resources Simulated第76-77页
        4.4.2 Specifications of Users Jobs第77-78页
    4.5 Experiment Results and Discussion第78-83页
        4.5.1 Experiment I: Fixed deadline/ Variable budget第78-80页
        4.5.2 Experiment II: Fixed budget/ Variable deadline第80-81页
        4.5.3 Experiment III: % of Deadline Time Utilized (Fixed Deadline)/ Variable Budget第81页
        4.5.4 Experiment IV: Fixed budget and Jobs/ Variable task granularity (task size)第81-83页
    4.6 Summary第83-84页
CONCLUSION AND FUTURE DIRECTION第84-86页
REFERENCES第86-91页
PUBLICATION第91-92页
ACKNOWLEDGEMENT第92-93页
APPENDIX A第93-94页

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