Advances in Electric Power and Energy. Группа авторов

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Advances in Electric Power and Energy - Группа авторов

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      Table of Contents

      1  COVER

      2  TITLE PAGE

      3  COPYRIGHT PAGE

      4  DEDICATION PAGE

      5  ABOUT THE EDITOR

      6  ABOUT THE CONTRIBUTORS

      7  CHAPTER 1: GENERAL CONSIDERATIONS 1.1 PRELUDE 1.2 DEFINING SSE 1.3 THE NEED FOR STATE ESTIMATION 1.4 STATIC STATE ESTIMATION IN PRACTICE 1.5 APPLICATIONS THAT USE SE SOLUTION 1.6 OVERVIEW OF CHAPTERS REFERENCES

      8  CHAPTER 2: STATE ESTIMATION IN POWER SYSTEMS BASED ON A MATHEMATICAL PROGRAMMING APPROACH 2.1 INTRODUCTION 2.2 FORMULATION 2.3 CLASSICAL STATE ESTIMATION PROCEDURE 2.4 MATHEMATICAL PROGRAMMING SOLUTION 2.5 ALTERNATIVE STATE ESTIMATORS REFERENCES

      9  PART I: SYSTEM FAILURE MITIGATION CHAPTER 3: SYSTEM STRESS AND CASCADING BLACKOUTS 3.1 INTRODUCTION 3.2 CASCADING BLACKOUTS AND PREVIOUS WORK 3.3 PROBLEM STATEMENT AND APPROACH 3.4 DFAXes, VULNERABILITY, AND CRITICALITY METRICS 3.5 VALIDITY OF METRICS 3.6 STUDIES WITH METRICS 3.7 SUMMARY 3.8 APPLICATION OF STRESS METRICS 3.9 CONCLUSIONS ACKNOWLEDGMENTS REFERENCES CHAPTER 4: MODEL‐BASED ANOMALY DETECTION FOR POWER SYSTEM STATE ESTIMATION 4.1 INTRODUCTION 4.2 CYBERATTACKS ON STATE ESTIMATION 4.3 ATTACK‐RESILIENT STATE ESTIMATION 4.4 MODEL‐BASED ANOMALY DETECTION 4.5 CONCLUSIONS REFERENCES CHAPTER 5: PROTECTION, CONTROL, AND OPERATION OF MICROGRIDS 5.1 PRELUDE 5.2 INTRODUCTION 5.3 STATE OF THE ART IN MICROGRID PROTECTION AND CONTROL 5.4 EMERGING TECHNOLOGIES 5.5 TEST CASE FOR DDSE 5.6 TEST RESULTS 5.7 TEST CASE FOR ADAPTIVE SETTING‐LESS PROTECTION 5.8 CONCLUSIONS REFERENCES

      10  PART II: ROBUST STATE ESTIMATION CHAPTER 6: PSSE REDUX: CONVEX RELAXATION, DECENTRALIZED, ROBUST, AND DYNAMIC SOLVERS 6.1 INTRODUCTION 6.2 POWER GRID MODELING 6.3 PROBLEM STATEMENT 6.4 DISTRIBUTED SOLVERS 6.5 ROBUST ESTIMATORS AND CYBERATTACKS 6.6 POWER SYSTEM STATE TRACKING 6.7 DISCUSSION ACKNOWLEDGMENTS 6.A APPENDIX REFERENCES CHAPTER 7: ROBUST WIDE‐AREA FAULT VISIBILITY AND STRUCTURAL OBSERVABILITY IN POWER SYSTEMS WITH SYNCHRONIZED MEASUREMENT UNITS 7.1 INTRODUCTION 7.2 ROBUST FAULT VISIBILITY USING STRATEGICALLY DEPLOYED SYNCHRONIZED MEASUREMENTS 7.3 OPTIMAL PMU DEPLOYMENT FOR SYSTEM‐WIDE STRUCTURAL OBSERVABILITY 7.4 CONCLUSIONS ACKNOWLEDGMENTS REFERENCES

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