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水火电机组联合发电优化调度方法

摘要第5-6页
ABSTRACT第6页
CHAPTER 1.INTRODUCTION第9-12页
    1.1 Background and meaning of the topic第9-10页
    1.2 Research contents and objectives第10页
    1.3 Significance of the study第10-11页
    1.4 Organization of the Thesis第11-12页
CHAPTER 2.HYDROTHEMAL COORDINATION第12-22页
    2.1 Introduction on literature review第12页
    2.2 Systematic coordination and operation of hydrothermal scheduling第12-13页
    2.3 Classification of hydro plant第13-16页
        2.3.1 Classification on basis of manmade storage第13-14页
        2.3.2 Classification on basis of natural differences in watersheds第14-16页
            2.3.2.1 Hydraulically independent plants第14-15页
            2.3.2.2 Hydraulically coupled plants第15-16页
            2.3.2.3 Multi chain hydro plants configuration第16页
    2.4 Classification of hydrothermal scheduling problem第16-18页
        2.4.1 Short term hydrothermal scheduling第17页
        2.4.2 Long term hydrothermal scheduling第17-18页
    2.5 Hydrothermal scheduling techniques第18-22页
CHAPTER 3.MATHEMATICAL MODELS FORMULATION OF MIXED INTEGERLINEAR PROGRAMMING第22-32页
    3.1 Introduction第22-24页
    3.2 Piecewise linear approximation of a functions of two variables第24-30页
        3.2.1 One dimensional method第24-25页
        3.2.2 Triangle Method第25-28页
        3.2.3 Rectangle method第28-30页
    3.3 Technique adopted for building a wide project in IBM Cplex Ilog optimization studio第30-32页
CHAPTER 4. PROBLEM FORMULATION OF THE CASE STUDY ANDGENERATION SCHEDULING APPROACH OF HYDROTHERMAL POWER SYSTEM第32-45页
    4.1 Problem formulation第32页
    4.2 Objective function第32页
    4.3 Constraints function第32-34页
    4.4 Case study for generation scheduling approach of hydrothermal power system第34-37页
    4.5 Important consideration in the analysis of the case study第37页
    4.6 Formulation of Mixed Integer Linear Programming Model第37-45页
        4.6.1 Piecewise linear programming第37页
        4.6.2 Piecewise formulation of Thermal generation units第37-40页
            4.6.2.1 Thermal unit commitment第39-40页
        4.6.3 Linearizing the hydropower production function第40-45页
            4.6.3.1 Linearization by ignoring the net head variation第40-42页
            4.6.3.2 Linearization by considering the net head variation第42-45页
CHAPTER 5.NUMERICAL RESULTS OF CASE STUDY AND DISCUSSION第45-62页
    5.1 Scheduling of thermal generating units without hydropower plant第45-52页
    5.2 Scheduling of thermal generating units with hydropower plant第52-62页
CHAPTER 6.CONCLUSIONS AND THE SCOPE OF FUTURE WORK第62-63页
    6.1 Conclusion第62页
    6.2 Scope of future work第62-63页
ACKNOWLEDGEMENT第63-64页
REFERENCES第64-67页

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