Integration of Renewable Energy Sources with Smart Grid
- Length: 384 pages
- Edition: 1
- Language: English
- Publisher: Wiley-Scrivener
- Publication Date: 2021-09-08
- ISBN-10: 1119750423
- ISBN-13: 9781119750420
- Sales Rank: #0 (See Top 100 Books)
This book starts with an overview of renewable energy technologies, smart grid technologies, energy storage systems, and covers the details of renewable energy integration with smart grid and the corresponding controls. This book provides better views on power scenario in developing countries. The requirement of the integration of smart grid along with the energy storage systems are deeply discussed to acknowledge the importance of sustainable development of smart city. The methodologies are made quite possible with the high-efficient power convertor topologies and intelligent control schemes. These control schemes are capable to provide better control with the help of machine intelligence techniques and artificial intelligence. The book also addresses the modern power convertor topologies and the corresponding control schemes for renewable energy integration with smart grid. The design and analysis of power converters that are used for grid integration of solar PV along with simulation and experimental results are illustrated. The protection aspects of the microgrid with power electronic configurations for wind energy systems are elucidated.
Cover Table of Contents Title page Copyright Preface 1 Renewable Energy Technologies 1. Introduction 1.1 Types of Renewable Energy References 2 Present Power Scenario in India 2.1 Introduction 2.2 Thermal Power Plant 2.3 Gas-Based Power Generation 2.4 Nuclear Power Plants 2.5 Hydropower Generation 2.6 Solar Power 2.7 Wind Energy 2.8 The Inherited Structure References 3 Introduction to Smart Grid 3.1 Need for Smart Grid in India 3.2 Present Power Scenario in India 3.3 Electric Grid 3.4 Overview of Smart Grids 3.5 Smart Grid Components for Transmission System 3.6 Smart Grid Functions Used in Distribution System 3.7 Case Study: Techno-Economic Analysis 3.8 Case Study: Solar PV Awareness of Puducherry SG Pilot Project 3.9 Recent Trends in Smart Grids References 4 Internet of Things–Based Advanced Metering Infrastructure (AMI) for Smart Grids 4.1 Introduction 4.2 Advanced Metering Infrastructure 4.3 IoT-Based Advanced Metering Infrastructure 4.4 Results 4.5 Discussion 4.6 Conclusion and Future Scope References 5 Requirements for Integrating Renewables With Smart Grid 5.1 Introduction 5.2 Challenges in Integrating Renewables Into Smart Grid 5.3 Conclusion References 6 Grid Energy Storage Technologies 6.1 Introduction 6.2 Grid Energy Storage Technologies: Classification 6.3 Grid Energy Storage Technologies: Analogy 6.4 Applications of Energy Storage System 6.5 Power Conditioning of Energy Storage System 6.6 Conclusions References 7 Multi-Mode Power Converter Topology for Renewable Energy Integration With Smart Grid 7.1 Introduction 7.2 Literature Survey 7.3 System Architecture 7.4 Modes of Operation of Multi-Mode Power Converter 7.5 Control Scheme 7.6 Results and Discussion 7.7 Conclusion References 8 Decoupled Control With Constant DC Link Voltage for PV-Fed Single-Phase Grid Connected Systems 8.1 Introduction 8.2 Schematic of the Grid-Tied Solar PV System 8.3 Simulation and Experimental Results of the Grid Tied Solar PV System 8.4 Conclusion References 9 Wind Energy Conversion System Feeding Remote Microgrid 9.1 Introduction 9.2 Literature Review 9.3 Direct Grid Connected Configurations of Three-Phase WDIG Feeding Single-Phase Grid 9.4 Three-Phase WDIG Feeding Single-Phase Grid With Power Converters 9.5 Performance of the Three-Phase Wind Generator System Feeding Power to Single-Phase Grid 9.6 Power Converter Configurations 9.7 Summary References 10 Microgrid Protection 10.1 Introduction 10.2 Necessity of Distributed Energy Resources 10.3 Concept of Microgrid 10.4 Why the Protection With Microgrid is Different From the Conventional Distribution System Protection 10.5 Foremost Challenges in Microgrid Protection 10.6 Microgrid Protection 10.7 Literature Survey 10.8 Comparison of Various Existing Protection Schemes for Microgrids 10.9 Loss of Mains (Islanding) 10.10 Necessity to Detect the Unplanned Islanding 10.11 Unplanned Islanding Identification Methods 10.12 Comparison of Unplanned Islanding Identification Methods 10.13 Discussion 10.14 Conclusion References 11 Microgrid Optimization and Integration of Renewable Energy Resources: Innovation, Challenges and Prospects 11.1 Introduction 11.2 Microgrids 11.3 Renewable Energy Sources 11.4 Integration of RES in Microgrid 11.5 Microgrid Optimization Schemes 11.6 Challenges in Implementation of Microgrids 11.7 Future Prospects of Microgrids 11.8 Conclusion References 12 Challenges in Planning and Operation of Large-Scale Renewable Energy Resources Such as Solar and Wind 12.1 Introduction 12.2 Solar Grid Integration 12.3 Wind Energy Grid Integration 12.4 Challenges in the Integration of Renewable Energy Systems with Grid 12.5 Electrical Energy Storage (EES) 12.6 Conclusion References 13 Mitigating Measures to Address Challenges of Renewable Integration— Forecasting, Scheduling, Dispatch, Balancing, Monitoring, and Control 13.1 Introduction 13.2 Microgrid 13.3 Large-Scale Integration of Renewables: Issues and Challenges 13.4 A Review on Short-Term Load Forecasting Methods 13.5 Overview on Control of Microgrid 13.6 Measures to Support Large-Scale Renewable Integration References 14 Mitigation Measures for Power Quality Issues in Renewable Energy Integration and Impact of IoT in Grid Control 14.1 Introduction 14.2 Impact of Power Quality Issues 14.3 Mitigation of Power Quality Issues 14.4 Discussions 14.5 Conclusion and Future Scope References 15 Smart Grid Implementations and Feasibilities 15.1 Introduction 15.2 Need for Smart Grid 15.3 Smart Grid Sensing, Measurement, Control, and Automation Technologies 15.4 Implementation of Smart Grid Project 15.5 Solar PV System Implementation Barriers 15.6 Smart Grid and Microgrid in Other Areas 15.7 Conclusion References Index Wiley End User License Agreement
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