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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Elektronik och kommunikationer

    Energy Processing and Smart Grid

    AvJames A. Momoh

    Inbunden, Engelska, 2018

    Del i serien IEEE Press Series on Power and Energy Systems

    1 511 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

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    E-bok

    1 735 kr

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    Beskrivning

    The first book in the field to incorporate fundamentals of energy systems and their applications to smart grid, along with advanced topics in modeling and controlThis book provides an overview of how multiple sources and loads are connected via power electronic devices. Issues of storage technologies are discussed, and a comparison summary is given to facilitate the design and selection of storage types. The need for real-time measurement and controls are pertinent in future grid, and this book dedicates several chapters to real-time measurements such as PMU, smart meters, communication scheme, and protocol and standards for processing and controls of energy options.Organized into nine sections, Energy Processing for the Smart Grid gives an introduction to the energy processing concepts/topics needed by students in electrical engineering or non-electrical engineering who need to work in areas of future grid development. It covers such modern topics as renewable energy, storage technologies, inverter and converter, power electronics, and metering and control for microgrid systems. In addition, this text: Provides the interface between the classical machines courses with current trends in energy processing and smart gridDetails an understanding of three-phase networks, which is needed to determine voltages, currents, and power from source to sink under different load models and network configurationsIntroduces different energy sources including renewable and non-renewable energy resources with appropriate modeling characteristics and performance measuresCovers the conversion and processing of these resources to meet different DC and AC load requirementsProvides an overview and a case study of how multiple sources and loads are connected via power electronic devicesBenefits most policy makers, students and manufacturing and practicing engineers, given the new trends in energy revolution and the desire to reduce carbon outputEnergy Processing for the Smart Grid is a helpful text for undergraduates and first year graduate students in a typical engineering program who have already taken network analysis and electromagnetic courses.

    Produktinformation

    • Utgivningsdatum:2018-08-24
    • Mått:154 x 232 x 26 mm
    • Vikt:844 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:IEEE Press Series on Power and Energy Systems
    • Antal sidor:448
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119376149

    Utforska kategorier

    • Elektronik och kommunikationer inom Naturvetenskap och teknik

    Mer om författaren

    JAMES A. MOMOH, PHD, is a Fellow at the Institute of Electronics and Electrical Engineering (IEEE) and a Distinguished Fellow at the Nigerian Society of Engineers (NSE). His current research activities for utility firms and government agencies span several areas in systems engineering, optimization, and energy systems control of terrestrial, space and naval complex and dynamic networks. Momoh was Chair of the Electrical Engineering Department at Howard University and Director of the Center for Energy Systems and Control.

    Innehållsförteckning

    • PREFACE xiACKNOWLEDGMENTS xiiiFOREWORD xvCHAPTER 1 INTRODUCTION 11.1 Introduction 1Bibliography 4CHAPTER 2 ELECTRIC NETWORK ANALYSIS IN ENERGY PROCESSING AND SMART GRID 52.1 Introduction 52.2 Complex Power Concepts 52.3 Review of AC-Circuit Analysis Using Phasor Diagrams 82.4 Polyphase Systems 92.5 Three-Phase Loads with Impedence Loads 132.6 Transformation of Y to Delta and Delta to Y 172.7 Summary of Phase and Line Voltages/Currents for Balanced Three-Phase Systems 192.8 Per-Unit Systems 222.9 Chapter Summary 27Exercises 27Bibliography 29CHAPTER 3 MAGNETIC SYSTEMS FOR ENERGY PROCESSING 313.1 Introduction 313.2 Magnetic Fields 313.3 Equivalent Magnetic and Electric Circuits 343.4 Overview of Magnetic Materials 353.5 Hysteresis Loops and Hysteresis Losses in Ferromagnetic Materials 353.6 Definitions 383.7 Magnetic Circuit Losses 383.8 Producing Magnetic Flux in Air Gap 403.9 Rectangular-Shaped Magnetic Circuits 413.10 Chapter Summary 45Exercises 45Bibliography 47CHAPTER 4 TRANSFORMERS 494.1 Introduction 494.2 First Two Maxwell’s Laws 504.3 Transformers 514.4 Ideal Single-Phase Transformer Models 564.5 Modeling a Transformer into Equivalent Circuits 594.6 Transformer Testing 654.7 Transformer Specifications 714.8 Three-Phase Power Transformers 724.9 New Advances in Transformer Technology: Solid-State Transformers 724.10 Chapter Summary 78Exercises 78Bibliography 82CHAPTER 5 INDUCTION MACHINES 835.1 Introduction 835.2 Construction and Types of Induction Motors 835.3 Operating Principle 855.4 Basic Induction-Motor Concepts 865.5 Induction-Motor Slip 885.6 Rotor Current and Leakage Reactance 885.7 Rotor Copper Loss 915.8 Developing the Equivalent Circuit of Polyphase, Wound-Rotor Induction Motors 925.9 Computing Corresponding Torque of Induction Motors 965.10 Approximation Model for Induction Machines 975.11 Speed Control of Induction Motors 1005.12 Application of Induction Motors 1015.13 induction-Generator Principles 1015.14 Chapter Summary 103Exercises 104Bibliography 106CHAPTER 6 SYNCHRONOUS MACHINES 1076.1 Introduction 1076.2 Synchronous-Generator Construction 1076.3 Exciters 1086.4 Governors 1106.5 Synchronous Generator Operating Principle 1106.6 Equivalent Circuit of Synchronous Machines 1126.7 Synchronous Generator Equivalent Circuits 1136.8 Over Excitation and Under Excitation 1146.9 Open-Circuit and Short-Circuit Characteristics 1156.10 Performance Characteristics of Synchronous Machines 1186.11 Generator Compounding Curve 1226.12 Synchronous Generator Operating Alone: Concept of Infinite Bus 1226.13 Initial Elementary Facts about Synchronous Machines 1236.14 Cylindrical-Rotor Machines for Turbo Generators 1256.15 Synchronous Machines with Effects of Saliency: Two-Reactance Theory 1256.16 The Salient-Pole Machine 1266.17 Synchronous Motors 1286.18 Synchronous Machines and System Stability 1316.19 Chapter Summary 135Exercises 136Bibliography 137CHAPTER 7 DC MACHINES 1397.1 Introduction 1397.2 Conductor Moving in a Uniform Magnetic Field 1397.3 Current-Carrying Conductor in a Uniform Magnetic Field 1397.4 DC-Machine Construction and Nameplate Parameters 1417.5 DC Machine Pertinent Nameplate Parameters 1427.6 Development and Configuration of Equivalent Circuits of DC Machines 1427.7 Classification of DC Machines 1477.8 Voltage Regulation 1517.9 Power Computation for DC Machines 1517.10 Power Flow and Efficiency 1527.11 DC Motors 1557.12 Computation of Speed of DC Motors 1557.13 DC-Machine Speed-Control Methods 1637.14 Ward Leonard System 1647.15 Chapter Summary 166Exercises 167Bibliography 168CHAPTER 8 PERMANENT-MAGNET MOTORS 1698.1 Introduction 1698.2 Permanent-Magnet DC Motors 1698.3 Permanent-Magnet Synchronous Motors 1778.4 Variants of Permanent-Magnet Synchronous Motors 1868.5 Chapter Summary 190Bibliography 190CHAPTER 9 RENEWABLE ENERGY RESOURCES 1939.1 Introduction 1939.2 Distributed Generation Concepts 1939.3 DG Benefits 1949.4 Working Definitions and Classifications of Renewable Energy 1959.5 Renewable-Energy Penetration 2189.6 Maximum Penetration Limits of Renewable-Energy Resources 2189.7 Constraints to Implementation of Renewable Energy 219Exercises 221Bibliography 222CHAPTER 10 STORAGE SYSTEMS IN THE SMART GRID 22310.1 Introduction 22310.2 Forms of Energy 22310.3 Energy Storage Systems 22310.4 Cost Benefits of Storage 23910.5 Chapter Summary 244Bibliography 244CHAPTER 11 POWER ELECTRONICS 24711.1 Introduction 24711.2 Power Systems with Power Electronics Architecture 24811.3 Elements of Power Electronics 24911.4 Power Semiconductor Devices 24911.5 Applications of Power Electronics Devices to Machine Control 27611.6 Applications of Power Electronics Devices to Power System Devices 28011.7 Applications of Power Electronics to Utility, Aerospace, and Shipping 28111.8 Facts 28211.9 Chapter Summary 286Bibliography 287CHAPTER 12 CONVERTERS AND INVERTERS 28912.1 Introduction 28912.2 Definitions 28912.3 DC–DC Converters 29012.4 Inverters 29612.5 Rectifiers 30112.6 Applications 31212.7 Chapter Summary 320Exercises 320Bibliography 322CHAPTER 13 MICROGRID APPLICATION DESIGN AND TECHNOLOGY 32313.1 Introduction to Microgrids 32313.2 Types of Microgrids 32413.3 Microgrid Architecture 32513.4 Modeling of a Microgrid 33013.5 Chapter Summary 332Bibliography 333CHAPTER 14 MICROGRID OPERATIONAL MANAGEMENT 33514.1 Perfomance Tools of a Microgrid 33514.2 Microgrid Functions 33714.3 IEEE Standards for Microgrids 34414.4 Microgrid Benefits 34614.5 Chapter Summary 349Bibliography 349CHAPTER 15 THE SMART GRID: AN INTRODUCTION 35115.1 Evolution, Drivers, and the Need for Smart Grid 35115.2 Comparison of Smart Grid with the Current Grid System 35215.3 Architecture of a Smart Grid 35315.4 Design for Smart-Grid Function for Bulk Power Systems 35315.5 Smart-Grid Challenges 36215.6 Design Structure and Procedure for Smart-Grid Best Practices 36315.7 Chapter Summary 365Bibliography 365CHAPTER 16 SMART-GRID LAYERS AND CONTROL 36716.1 Introduction 36716.2 Controls for the Smart Grid 36716.3 Layers of Smart Grid Within the Grid 37316.4 Command, Control, and Communication Applications in Real Time 39016.5 Hardware-in-the-Loop for Energy Processing and the Smart Grid 39416.6 Evolution of Cyber-Physical Systems 39416.7 Chapter Summary 396Bibliography 397CHAPTER 17 ENERGY PROCESSING AND SMART-GRID TEST BEDS 40117.1 Introduction 40117.2 Study of Available Test Beds for the Smart Grid 40117.3 Smart Microgrid Test-Bed Design 40317.4 Smart-Grid Test Beds 40417.5 Smart-Grid Case Studies 40517.6 Simulation Tools, Hardware, and Embedded Systems 40817.7 Limitations of Existing Smart-Grid Test Beds 41117.8 Chapter Summary 412Bibliography 412INDEX 415