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Title:
Resilient community microgrids
Author:
Swathika, O. V. Gnana, editor.
ISBN:
9781394272549

9781394272532

9781394272525
Physical Description:
1 online resource
Contents:
Cover -- Series Page -- Title Page -- Copyright Page -- Contents -- Preface -- Chapter 1 AI-Based Virtual Advisor for Smart Climate Farming -- 1.1 Introduction -- 1.2 Research on Smart Farming Technologies and AI Applications -- 1.3 AI and IoT in Smart Farming -- 1.4 Sustainable Agriculture and Climate-Smart Farming -- 1.5 Conclusion -- References -- Chapter 2 Swappable Battery Pack System for Electric Two-Wheelers: Design, Infrastructure, and Implementation -- 2.1 Introduction -- 2.2 Swappable Battery Technology -- 2.3 Battery Swapping Infrastructure and Optimization

2.4 Battery Management System -- 2.5 Business Models and Economic Implications -- 2.6 Conclusion -- References -- Chapter 3 Implementation of High Gain Bidirectional Interleaved DC/DC Converter for Electric Vehicles with Supercapacitors -- 3.1 Introduction -- 3.2 Proposed Converter -- 3.3 Operating Principle of the HGBID Converter -- 3.4 Design Considerations -- 3.5 Characteristics of SC -- 3.6 Simulation Results -- 3.7 Conclusion -- References -- Chapter 4 Fault Over-Ride and Minimization of Losses in a PV Integrated Transmission Network Using STATCOM -- 4.1 Introduction -- 4.2 Problem Statement

4.3 Contingency Analysis and Contingency Selection -- 4.4 Test System, Software and Components Used -- 4.4.1 Test System and Software -- 4.4.2 PV Generators Integration -- 4.4.3 Static Synchronous Compensator (STATCOM) -- 4.5 Results and Analysis -- 4.5.1 Bus Network Integrated with Solar Photo-Voltaic Generators -- 4.5.2 Test Bus Network with One STATCOM Installed at Bus 6 -- 4.6 IEEE 14 Bus Network with Two STATCOMs Installed at Bus 2 and Bus 6 -- 4.7 Conclusion -- 4.8 Future Scope -- References -- Chapter 5 Oscillating Water Column as Clean Energy Source for Sustainable Power Generation

5.1 Introduction to Technology -- 5.2 Hardware Implementation -- 5.3 Three-Dimensional Design of Hardware Components in Solid Edge Software -- 5.4 Hardware Implementation Results and Performance Analysis of Oscillating Water Column (OWC) -- 5.5 Conclusion -- 5.6 Future Scope -- References -- Chapter 6 Cloud-Based Big Data Architecture and Infrastructure -- 6.1 Introduction -- 6.1.1 Overview of the Difficulties Caused by the Quantity, Speed and Diversity of Big Data -- 6.1.2 The Significance of Adaptable and Scalable Approaches to the Storage, Processing and Analysis of Huge Datasets

6.2 Big Data Architecture for the Cloud Fundamentals -- 6.3 Overview of Methods for Ingesting Data, Including Batch Operations and Live Streaming -- 6.3.1 A Description of Distributed Computing Architectures and How They Support Large-Scale Cloud Data Processing -- 6.4 Technologies for Big Data on the Cloud -- 6.4.1 Examining Virtualization and Containerization Technologies and How They Affect the Use of Large Data -- 6.5 Overview of Server Less Computing and Its Benefits for Cost Optimization and Scaling
Abstract:
Discover how to empower your community with sustainable energy solutions with Resilient Community Microgrids, a comprehensive guide that explores the integration of innovative technologies and distributed energy resources to enhance local energy independence and resilience. Resilient Community Microgrids emphasizes opportunities to incorporate distributed energy resources and communication networks to build a cyber-physical community microgrid system by modelling photovoltaics, energy storage units, micro-turbines, and wind energy. The microgrid proves itself as a sustainable archetype to improve the resilience and reliability of power distribution networks. High-distributed energy resources penetrate communities, unlocking the potential to build the resilience of microgrids. Neighborhoods, villages, towns, and cities can meet their local energy needs by utilizing community microgrids. Community microgrids are being considered as a possibility even in locations where a bigger grid already exists, primarily as a means of boosting local energy independence and resilience. The fundamentals of community microgrids are covered in this book, along with an outline of how to join one and the factors contributing to their rising popularity. Novel technologies arrive with the potential to integrate with the physical microgrid to realize the next generation in cyber-physical microgrid systems, which can be used as a prototype to demonstrate and promote the development of next-generation microgrids. Resilient Community Microgrids will clarify the ways to enhance a cyber-physical system's resilience that significantly contributes to realizing innovative and sustainable development in the energy sector.
Local Note:
John Wiley and Sons
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E-Book 599842-1001 TK3106 .R47 2025
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