اینترنت انرژی: رویکردی عملگرا به سوی توسعه پایدار
The Internet of Energy : A Pragmatic Approach Towards Sustainable Development
معرفی کتاب «اینترنت انرژی: رویکردی عملگرا به سوی توسعه پایدار» (با عنوان لاتین The Internet of Energy : A Pragmatic Approach Towards Sustainable Development) نوشتهٔ Sheila Mahapatra (editor), Mohan Krishna S. (editor), B. Chandra Sekhar (editor), Saurav Raj (editor)، منتشرشده توسط نشر Apple Academic Press در سال 2023. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.
Providing innovative efficient, clean, and safe solutions and research for interfacing internet technology with energy power grids for smart cities and smart transportation, this new volume discusses the use and automation of electricity infrastructures for energy producers and manufacturers, integrating the implementation of the Internet of Things (IoT) technology for distributed energy systems in order to optimize energy efficiency and wastage. This volume offers a wide range of research on using IoT for energy solutions, such as algorithms for the design and control of energy grids, investigations of thermal efficiency from solar grids, energy for smart buildings using IoT, deep learning for electrical load forecasting, hybrid ultracapacitors in solar microgrids, induction motor-driven electric vehicles, power loss reduction and voltage improvement, and much more. Discusses the automation of electricity infrastructures for energy producers, integrating the implementation of IoT technology for distributed energy systems to optimize energy efficiency and wastage. Provides efficient, clean, and safe solutions for interfacing internet technology with energy power grids for smart cities and transportation. Cover 1 Half Title 2 Title Page 4 Copyright Page 5 About the Editors 6 Table of Contents 10 Contributors 12 Abbreviations 16 Preface 22 1. Design and Control Using an ISOGI-Q Algorithm for Grid Integration of PV-Array 24 2. Thermal Efficiency Investigation of a Solar Parabolic Trough Collector System Using Two Dissimilar Reflectors 44 3. Smart Buildings Using IoT and Green Engineering 60 4. A Novel Electrical Load Forecasting Model Using a Deep Learning Approach 90 5. Battery Plant Model Development for BMS Application 114 6. Modeling of Constant Voltage Control in Synchronous Buck and Boost Converters Using MATLAB/Simulink for Point-of-Load Application 126 7. Determination of Open Loop Responses of Switched DC–DC Converters Using Various Modeling Techniques 148 8. Evolution of Hybrid Ultracapacitors in Solar Microgrids 178 9. Speed Sensorless Model Predictive Current Control of Induction Motor-Driven Electric Vehicle 202 10. Performance Analysis of Hybrid Off-Grid Two-Axis Photovoltaic Tracking System/Fuel Cell Energy System Incorporating High-Efficiency Solar Cell 218 11. Efficient Integration of Distributed Generation in Radial Distribution Network for Voltage Profile Improvement and Power Loss Minimization via Particle Swarm Optimization 230 12. Classical and Predictive Control of Interior Permanent Magnet Synchronous Motor for Railway Application 250 13. Electric Mobility 274 14. Power Loss Reduction and Voltage Improvement Through Capacitors and Their Optimization for the Distribution System 290 15. Solar Photovoltaic Powered Automatic Irrigation System for the Agriculture Sector 318 16. Optimal Parameter Estimation of 3-Phase Transmission Line Using a Grey Wolf Optimization Algorithm 336 17. Network Reconfiguration-Based Outage Management for Reliability Enhancement of Microgrid: A Hardware in Loop Approach 360 18. A Net Energy Meter-Based Approach for Islanding Detection in Modern Distribution Systems 382 Index 408 Energy,Efficiency;,Internet,of,Things;,Power,Industries Energy Efficiency,Internet of Things,Power Industries The Internet of Energy (IoE): A Pragmatic Approach Towards Sustainable Development discusses the use and automation of electricity infrastructures for energy producers and manufacturers, integrating the implementation of the Internet of Things (IoT) technology for distributed energy systems in order to optimize energy efficiency and wastage. This new volume showcases the contemporary work on the IoE with a diverse selection of chapters. The volume offers a wide range of research on using IoT for energy solutions, such as algorithms for the design and control of energy grids, investigations of thermal efficiency from solar, energy for smart buildings using IoT, deep learning for electrical load forecasting, hybrid ultracapacitors in solar microgrids, induction motor-driven electric vehicles, power loss reduction and voltage improvement, and much more. Providing innovative efficient, clean, and safe solutions and research for interfacing internet technology with energy power grids for smart cities and smart transportation, this volume will be valuable for energy technology researchers, academicians, and industrialists and policymakers and engineering faculty and students.
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