Smart Electrical Grid System: Design Principle, Modernization, and TechniquesKrishan Arora, Suman Lata Tripathi, Sanjeevikumar Padmanaban Smart technologies, such as artificial intelligence and machine learning, play a vital role in modeling, analysis, performance prediction, effective control, and utilization of smart energy systems. This book presents novel concepts in the development of smart cities and smart grids as well as discusses the technologies involved in producing efficient and economically feasible energy technologies around the world. It comprehensively covers important topics, including optimization methods for smart grids, power converters, smart meters, load frequency control, automatic generation control, and power electronics for smart grids. This book focuses mainly on three areas of electrical engineering: control systems, power electronics, and renewable resources, including artificial intelligence for the development of smart electrical grids. Key Features • Clarifies how the smart grid plays an important role in modern smart technologies • Introduces the basic concepts of modernization of smart grid with the assumption of basic knowledge of mathematics and power systems • Describes the structure of technologies based on Internet of Things (IoT), which acts like a bridge to cover the gap between the physical and virtual worlds required for the realization of the smart grid • Includes practical examples of the smart grid and energy saving • Illustrates the integration of renewable energy sources with worked examples • Enables readers to engage with the immediate development of power systems by using smart approaches for future smart grids |
Contents
Chapter 1 Internet of Things Based Modernization of Smart Electrical Grid | 1 |
Chapter 2 Role of NonConventional Energy Resources in Todays Environment | 15 |
Chapter 3 Flexible Load and Renewable Energy Integration with Impact on Voltage Profile of a Large Size Grid | 31 |
Chapter 4 Energy Storing Devices for Sustainable Environment | 53 |
Chapter 5 Clean and Green Energy Fundamentals | 77 |
Chapter 6 Evaluation of Sustainable Window for Energy Mitigation in an Electrical Grid Building | 95 |
Chapter 7 Filter Bank Multicarrier for Smart Grid Systems | 103 |
Chapter 8 Recent Trends in Economic Scheduling and Emission Dispatch of Distributed Generators in Microgrids | 119 |
Chapter 10 Experimental Analysis of Surface Integrity of Machined Stainless Steel SS304 by Taguchi Method Coupled with GRA Used in Electrical ... | 139 |
Chapter 11 Energy Storage Devices Based on 2D Phosphorene as an Electrode Material | 151 |
Chapter 12 Application and Performance Analysis of Various NatureInspired Algorithm in AGC Synthesis | 169 |
Chapter 13 Unified Smith Predictor for MIMO Systems with Multiple Time Delays | 179 |
Chapter 14 Renewable Energy Sources and Small Hydro Power Scenario in Mountainous Regions of Himalayas | 193 |
Chapter 15 A Comprehensive Review on Energy Storage Systems | 211 |
An Overview of Defenses | 253 |
| 277 | |
Chapter 9 Forecasting of TensileShear Strength of JSC 590RN LowCarbon Steel Spot Welds Using Taguchi Technique Used in Electrical Grids | 127 |
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Smart Electrical Grid System: Design Principle, Modernization, and Techniques Taylor & Francis Group No preview available - 2022 |


