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电网互联的智能鲁棒负荷频率控制策略研究(英文版)

ABSTRACT第6-8页
详细中文摘要第10-20页
CHAPTER 1: INTRODUCTION第20-43页
    1.1 Background and motivation第20-27页
        1.1.1 Background第20-24页
        1.1.2 Motivation第24-27页
    1.2 Mathematical model of a large-scale electric power system第27-39页
    1.3 Review of literature第39-41页
    1.4 Structure of dissertation第41-43页
CHAPTER 2: FUNDAMENTAL INTELLIGENT LOAD-FREQUENCY CONTROL STRATEGIES第43-89页
    2.1 Introduction第43页
    2.2 Conventional LFC controllers第43-45页
    2.3 Fuzzy logic-based LFC strategies第45-54页
        2.3.1 PD-Type Fuzzy Logic Load-Frequency Controllers第46-50页
        2.3.2 PI-Type Fuzzy Logic Load-Frequency Controllers第50-54页
    2.4 Artificial Neural network-based LFC strategies第54-74页
        2.4.1 LFC based on narma-12 architecture第57-67页
        2.4.2 LFC based on mrac architecture第67-74页
    2.5 Power networks under study第74-87页
        2.5.1 Three-Area Power System USING PD-Type FL Controllers第74-76页
        2.5.2 Four-Area Power Systems using PI-Type FL Controllers第76-81页
        2.5.3 Five-area power system applying two basic ANN-based load-frequencycontrollers第81-87页
    2.6 Conclusion第87-89页
CHAPTER 3: HYBRID LFC CONTROLLERS BASED ON FUZZY LOGIC NEURAL NETWORK第89-108页
    3.1 Abstract第89页
    3.2 Introduction第89-91页
    3.3 Design of hybrid LFC scheme based on FUZZY LOGIC AND NEURAL NETWORK第91-95页
        3.3.1 ANN - Based Control Phase第92-94页
        3.3.2 PD-Like FL-Based Control Phase第94-95页
    3.4 Superconducting magnetic energy storage device for Ifc第95-98页
    3.5 Power networks under study第98-106页
        3.5.1 The Superiority of the Proposed Hybrid LFC Controllers第103-105页
        3.5.2 The Effectiveness of the SMES Devices第105-106页
    3.6 Conclusion第106-108页
CHAPTER 4: OPTIMAL LFC STRATEGY BASED ON FUZZY LOGIC AND BIOLOGY - INSPIRED METHOD第108-127页
    4.1 Abstract第108页
    4.2 Introduction第108-111页
    4.3 Design of optimal biology-inspired fuzzy logic LFC controller第111-118页
        4.3.1 Applying the PSO algorithm to tune the membership functions第112-114页
        4.3.2 Genetic algorithm to optimize the rule base第114-116页
        4.3.3 Online self-tuning method to adjust the output scaling factor第116-117页
        4.3.4 Synchronous procedure to design the adaptive FL controller第117-118页
    4.4 Power networks under study第118-125页
    4.5 Conclusions第125-127页
CHAPTER 5: ROBUST LFC CONTROLLERS BASED ON SLIDING MODE CONTROL第127-141页
    5.1 Introduction第127-128页
    5.2 AN Overview of the SMC第128-130页
    5.3 SMC Strategy Applied to the LFC issue第130-135页
        5.3.1 Modified SMC Scheme第130-132页
        5.3.2 Robust SMC-based LFC Strategy第132-135页
    5.4 Power networks under study第135-140页
    5.5 Conclusion第140-141页
CONCLUSION AND FUTURE WORK第141-145页
ACKNOWLEDGEMENTS第145-147页
REFERENCES第147-154页
SIMULATION PARAMETERS第154-155页
LIST OF PUBICATIONS第155页

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