Energy and Environmental Aspects of Emerging Technologies for Smart Grid

Author:   Surender Reddy Salkuti
Publisher:   Springer International Publishing AG
Edition:   2024 ed.
ISBN:  

9783031183881


Pages:   748
Publication Date:   25 May 2024
Format:   Hardback
Availability:   Manufactured on demand   Availability explained
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Energy and Environmental Aspects of Emerging Technologies for Smart Grid


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Overview

This book presents mathematical models of various renewable energy sources (RESs) such as wind energy systems, solar PV systems, battery energy storage systems, pumped-storage hydropower, biomass, and electric vehicles (EVs). It also discusses the challenging task of the integration of high penetration of renewable energies and EVs within existing power systems. The uncertainty related to RESs, electric vehicle charging, and load demands is also modelled.  The book provides illustrative and comprehensive practical case studies to enable a complete understanding of the proposed methodologies. This book will consider the nuances of all these new paradigms, smart grid components, technology, and the impact of energy storage, EVs, and distributed energy resources, in the power networks.

Full Product Details

Author:   Surender Reddy Salkuti
Publisher:   Springer International Publishing AG
Imprint:   Springer International Publishing AG
Edition:   2024 ed.
ISBN:  

9783031183881


ISBN 10:   3031183886
Pages:   748
Publication Date:   25 May 2024
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Energy Management in Microgrid with Battery Storage System.- Wind Energy Conversion Systems: A Review on Aerodynamic, Electrical and Control Aspects, Recent Trends, Comparisons and Insights.- Buck-Boost Converter-Based Sliding Mode Maximum Power Point Tracking System for Photovoltaic Systems.- Optimized Control of an Isolated Wind Energy Conversion System.- Emerging Technologies for the Integration of Renewable Energy, Energy Storage and Electric Vehicles.- Coordinated Control Strategy for LFC in an Islanded Microgrid: A JAYA Algorithm based Cascade PD-PI Approach.- Simulation and Analysis of Solar-Wind System for EV Charging.- Performance of Grid-Connected Shunt Active Filter Equipped PV System.- Smart Energy Management Model for Electric Vehicles.- Improved Linear Sinusoidal Tracer based Control for Three-Phase VSC in Photovoltaics.- Analysis, Modeling and Implementation of Electric Vehicle Converter Configurations.- Integration of Electric Vehicles with Smart Grid.- Installation ofUPQC in Radial Distribution System for Enhancement of Voltage Profile.- Infinite Impulse Response Peak Filter with Salp Swarm Optimization Technique for Improvement of DVR Reliability.- Design of Fuzzy Logic Controller based BLDC Motor.- Impact of Discrete-Time Modeling on Dual Input Modified SEPIC Converter.- Directional Relaying Issues in Power Transmission Networks.- Passivity based Modeling of a Two-Input DC-DC Power Converter with Constant Power and Constant Voltage Load.- SVPWM based Transformerless Z-Source Five Level Cascaded Inverter with Grid Connected PV System.- An Empirical Analysis of Campus Energy Monitoring Systems using Cloud-Based Storage.- Development of Power Quality Disturbances Dataset for Classification Using Deep Learning.- Short Circuit Analysis and Relay Coordination of Power System Network.- Power quality disturbances data dimensionality reduction using autoencoder.- The Metamorphic Influence of Nascent Technologies on Intelligent Grid Networks.- A Novel FSDReconfiguration Technique for Dynamic Shading in Photovoltaic Systems.- Wavelet-ANN Based Detection of Fault Location of Renewable Energy Sources Integrated Power Transmission System.- Smart Grid and Energy Management Systems: A Global Perspective.- Active Power Load and Electrical Energy Price Datasets for Load and Price Forecasting.- Design and Analysis of Digitally Operated PV Emulator with Resistive Load Using Newton-Raphson Method.- Design and Analysis of Digitally Controlled Newton-Raphson Method Based Hardware Integrated PV Emulator with Resistive Load.- Optimal Location Selection of Electric Vehicle Charging Stations and Capacitors in Radial Distribution Networks Using GJO Algorithm.

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Author Information

Surender Reddy Salkuti is working with Woosong University, South Korea as an Associate Professor in the Department of Railroad and Electrical Engineering since April 2014. He received the Ph.D. degree in Electrical Engineering from the Indian Institute of Technology Delhi (IITD), India, in 2013. He was a Postdoctoral Researcher at Howard University, Washington, DC, USA, from 2013 to 2014. His research interests include power system restructuring issues, smart grid development with the integration of wind and solar photovoltaic energy sources, battery storage and electric vehicles, demand response, power system analysis and optimization, and soft computing techniques application in power systems and renewable energy. He has published one edited volume with Springer (LNEE) and more than 200 research articles in peer-reviewed international journals and conference proceedings. He has served as or is serving as Guest Editor for various international journals. He is also an editorial board member for many journals. He is the recipient of the 2016 Distinguished Researcher Award from Woosong University Educational Foundation, South Korea, and POSOCO Power System Award (PPSA) 2013, India. He is a Member of IEEE and IEEE Power and Energy Society.

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