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Grid-Forming Power Inverters Control and Applications

Grid Integration of Solar Photovoltaic Systems

Smart Grid Fundamentals Energy Generation Transmission and Distribution

Spray Polyurethane Foam in External Envelopes of Buildings

Design and Control of Grid-Connected Photovoltaic System

Design and Control of Grid-Connected Photovoltaic System

The current model for electricity generation and distribution is dominated by centralized power plants which are typically associated with combustion (coal oil and natural gas) or nuclear generation units. These power models require distribution from the center to outlying consumers and have many disadvantages concerning the electric utilities transmission and distribution and greenhouse gas emissions. This resulted in the modelling and development of cleaner renewable power generation with alternative sources such as photovoltaic (PV) wind and other sources. Further due to matured PV technology constant drop-in installation cost greenhouse emissions reductions energy efficiency reduced transmission and distribution investments minimization of electric losses and network support the development of PV systems is proliferating. In view of this development this book provides an idea for setting up the PV plant from initial study of the site to plan sizing. Once the first planning is covered the book focuses on the modeling aspects of power electronics converter and control elements associated with it keeping the operating standards specified for the development of distributed generation systems in check. This book will be useful for industrial professionals and researchers who are working toward modeling of PV plants and their control in grid connected operation. All the necessary information related to these fields is available in the book. | Design and Control of Grid-Connected Photovoltaic System

GBP 100.00
1

Deregulated Electricity Structures and Smart Grids

Power System Fundamentals

Polymeric Foams Innovations in Processes Technologies and Products

The Nano Age of Digital Immunity Infrastructure Fundamentals and Applications The Intelligent Cyber Shield for Smart Cities

Renewable Energy Systems Fundamentals and Source Characteristics

Smart Electricity Distribution Networks

Emerging Power Converters for Renewable Energy and Electric Vehicles Modeling Design and Control

Emerging Power Converters for Renewable Energy and Electric Vehicles Modeling Design and Control

This book covers advancements of power electronic converters and their control techniques for grid integration of large-scale renewable energy sources and electrical vehicles. Major emphasis is on transformer-less direct grid integration bidirectional power transfer compensation of grid power quality issues DC system protection and grounding interaction in mixed AC/DC systems AC and DC system stability design of high-frequency high power density systems with advanced soft magnetic materials modeling and simulation of mixed AC/DC systems switching strategies for enhanced efficiency and protection and reliability for sustainable grid integration. This book is an invaluable resource for professionals active in the field of renewable energy and power conversion. Md. Rabiul Islam received his PhD from the University of Technology Sydney (UTS) Australia. He was appointed as a Lecturer at Rajshahi University of Engineering & Technology (RUET) in 2005 and promoted to full-term Professor in 2017. In early 2018 he joined the School of Electrical Computer and Telecommunications Engineering University of Wollongong Australia. He is a Senior Member of IEEE. His research interests include the fields of power electronic converters renewable energy technologies power quality electrical machines electric vehicles and smart grids. He has authored or coauthored more than 200 publications including 50 IEEE Transactions/IEEE Journal papers. He has been serving as an editor for IEEE Transactions on Energy Conversion and IEEE Power Engineering Letters and associate editor for IEEE Access. Md. Rakibuzzaman Shah is a Senior Lecturer with the School of Engineering Information Technology and Physical Science at Federation University Australia. He has worked and consulted with distribution network operators and transmission system operators on individual projects and has done collaborative work on a large number of projects (EPSRC project on multi-terminal HVDC Scottish and Southern Energy multi-infeed HVDC) - primarily on the dynamic impact of integrating new technologies and power electronics into large systems. He is an active member of the IEEE and CIGRE. He has more than 70 international publications and has spoken at the leading power system conferences around the world. His research interests include future power grids (i. e. renewable energy integration wide-area control) asynchronous grid connection through VSC-HVDC application of data mining in power system distribution system energy management and low carbon energy systems. Mohd. Hasan Ali is currently an Associate Professor with the Electrical and Computer Engineering Department at the University of Memphis USA where he leads the Electric Power and Energy Systems (EPES) Laboratory. His research interests include advanced power systems smart-grid and microgrid systems renewable energy systems and cybersecurity issues in modern power grids. Dr. Ali has more than 190 publications including 2 books 4 book chapters 2 patents 60 top ranked journal papers 96 peer-reviewed international conference papers and 20 national conference papers. He serves as the editor of the IEEE Transactions on Sustainable Energy and IET-Generation Transmission and Distribution (GTD) journal. Dr. Ali is a Senior Member of the IEEE Power and Energy Society (PES). He is also the Chair of the PES of the IEEE Memphis Section. | Emerging Power Converters for Renewable Energy and Electric Vehicles Modeling Design and Control

GBP 68.99
1

Coordinate Systems of the World Datums and Grids

Coordinate Systems of the World Datums and Grids

A comprehensive consolidation of data for the world this book gives a short precis of each nation each nation’s history its topography and a chronology of the development of geodetic surveying and coordinate systems for that specific nation. This book is a starting point of information for understanding the world’s datums and grids. Based on the details available for each nation the reader is given an overall view that can answer questions regarding the sources of spatial information available their limitations and the critical things to be aware. The topographic maps compiled over the centuries represent the mixes of technology specifically to that nation. The book provides information and clues regarding existing maps and how those maps and coordinate systems were created. Features Provides concise history of the foundations of each country’s geodetic Datums Includes coordinates of every known geodetic Datum Origin in the world Explains transformation parameters from native Datums to WGS84 for many countries Offers Grid parameters for most of the native Grid Systems of the world Provides guidance on Grid System math models specific to individual countries This book is intended for readers that have a solid foundation in cartography and mapping sciences such as graduate students with an interest in these subjects as well as land surveyors geodesists mineral exploration professionals cartographers GIS specialists remote sensing professionals military intelligence specialists as well as archeologists biblical scholars cadastral researchers diplomats of boundary treaties and technical professionals travelling to every foreign country in the world that intends to use local paper maps. | Coordinate Systems of the World Datums and Grids

GBP 170.00
1

Smart Grids for Renewable Energy Systems Electric Vehicles and Energy Storage Systems

Smart Grids for Renewable Energy Systems Electric Vehicles and Energy Storage Systems

This comprehensive reference text discusses simulation with case studies and realworld applications related to energy system models the large-scale integration of renewable energy systems electric vehicles and energy storage systems. The text covers analysis and modeling of the large-scale integration of renewable energy systems electric vehicles and energy storage systems. It further discusses economic aspects useful for policy makers and industrial professionals. It covers important topics including smart grids architectures wide-area situational awareness (WASA) energy management systems (EMS) demand response (DR) smart grid standardization exertions virtual power plants battery degradation modeling optimization approaches in modeling and smart metering infrastructure. The book: Discusses the analysis and modeling of the large-scale integration of renewable energy systems electric vehicles and energy storage systems Covers issues and challenges encountered in the large-scale integration of electric vehicles energy storage systems and renewable energy systems into future smart grid design Provides simulation with case studies and real-world applications related to energy system models electric vehicles and energy storage systems Discusses the integration of large renewable energy systems with the presence of a large number of electric vehicles and storage devices/systems Discussing concepts of smart grids together with the deployment of electric vehicles energy storage systems and renewable energy systems this text will be useful as a reference text for graduate students and academic researchers in the fields of electrical engineering electronics and communication engineering renewable energy and clean technologies. It further discusses topics including electric grid infrastructure architecture interfacing standardization protocols security reliability communication and optimal control. | Smart Grids for Renewable Energy Systems Electric Vehicles and Energy Storage Systems

GBP 110.00
1

Telecom Power Systems

Power Systems Analysis Illustrated with MATLAB and ETAP

Power System SCADA and Smart Grids

Power System SCADA and Smart Grids

Power System SCADA and Smart Grids brings together in one concise volume the fundamentals and possible application functions of power system supervisory control and data acquisition (SCADA). The text begins by providing an overview of SCADA systems evolution and use in power systems and the data acquisition process. It then describes the components of SCADA systems from the legacy remote terminal units (RTUs) to the latest intelligent electronic devices (IEDs) data concentrators and master stations as well as:Examines the building and practical implementation of different SCADA systemsOffers a comprehensive discussion of the data communication protocols and media usageCovers substation automation (SA) which forms the basis for transmission distribution and customer automationAddresses distribution automation and distribution management systems (DA/DMS) and energy management systems (EMS) for transmission control centersDiscusses smart distribution smart transmission and smart grid solutions such as smart homes with home energy management systems (HEMs) plugged hybrid electric vehicles and morePower System SCADA and Smart Grids is designed to assist electrical engineering students researchers and practitioners alike in acquiring a solid understanding of SCADA systems and application functions in generation transmission and distribution systems which are evolving day by day to help them adapt to new challenges effortlessly. The book reveals the inner secrets of SCADA systems unveils the potential of the smart grid and inspires more minds to get involved in the development process.

GBP 44.99
1

Power-Flow Modelling of HVDC Transmission Systems

Big Data Analytics Framework for Smart Grids

Big Data Analytics Framework for Smart Grids

The text comprehensively discusses smart grid operations and the use of big data analytics in overcoming the existing challenges. It covers smart power generation transmission and distribution explains energy management systems artificial intelligence and machine learning–based computing. Presents a detailed state-of-the-art analysis of big data analytics and its uses in power grids Describes how the big data analytics framework has been used to display energy in two scenarios including a single house and a smart grid with thousands of smart meters Explores the role of the internet of things artificial intelligence and machine learning in smart grids Discusses edge analytics for integration of generation technologies and decision-making approaches in detail Examines research limitations and presents recommendations for further research to incorporate big data analytics into power system design and operational frameworks The text presents a comprehensive study and assessment of the state-of-the-art research and development related to the unique needs of electrical utility grids including operational technology storage processing and communication systems. It further discusses important topics such as complex adaptive power system self-healing power system smart transmission and distribution networks and smart metering infrastructure. It will serve as an ideal reference text for senior undergraduate graduate students and academic researchers in the areas such as electrical engineering electronics and communications engineering computer engineering and information technology. | Big Data Analytics Framework for Smart Grids

GBP 120.00
1

Silicone Dispersions

Solar Powered Charging Infrastructure for Electric Vehicles A Sustainable Development

Solar Powered Charging Infrastructure for Electric Vehicles A Sustainable Development

The Paris Agreement on Climate Change adopted on December 12 2015 is a voluntary effort to reduce greenhouse gas emissions. In order to reach the goals of this agreement there is a need to generate electricity without greenhouse gas emissions and to electrify transportation. An infrastructure of SPCSs can help accomplish both of these transitions. Globally expenditures associated with the generation transmission and use of electricity are more than one trillion dollars per year. Annual transportation expenditures are also more than one trillion dollars per year. Almost everyone will be impacted by these changes in transportation solar power generation and smart grid developments. The benefits of reducing greenhouse gas emissions will differ with location but all will be impacted. This book is about the benefits associated with adding solar panels to parking lots to generate electricity reduce greenhouse gas emissions and provide shade and shelter from rain and snow. The electricity can flow into the power grid or be used to charge electric vehicles (EVs). Solar powered charging stations (SPCSs) are already in many parking lots in many countries of the world. The prices of solar panels have decreased recently and about 30% of the new U. S. electrical generating capacity in 2015 was from solar energy. More than one million EVs are in service in 2016 and there are significant benefits associated with a convenient charging infrastructure of SPCSs to support transportation with electric vehicles. Solar Powered Charging Infrastructure for Electric Vehicles: A Sustainable Development aims to share information on pathways from our present situation to a world with a more sustainable transportation system with EVs SPCSs a modernized smart power grid with energy storage reduced greenhouse gas emissions and better urban air quality. Covering 200 million parking spaces with solar panels can generate about 1/4 of the electricity that was generated in 2014 in the United States. Millions of EVs with 20 to 50 kWh of battery storage can help with the transition to wind and solar power generation through owners responding to time-of-use prices. Written for all audiences high school and college teachers and students those in industry and government and those involved in community issues will benefit by learning more about the topics addressed in the book. Those working with electrical power and transportation who will be in the middle of the transition will want to learn about all of the challenges and developments that are addressed here. | Solar Powered Charging Infrastructure for Electric Vehicles A Sustainable Development

GBP 52.99
1

Microneedling in Clinical Practice

Photovoltaic System Design Procedures Tools and Applications

Photovoltaic System Design Procedures Tools and Applications

Introducing a Reliable Green Technology That Can Help Improve System PerformanceSolely centered on photovoltaic (PV) system sizing and the tools used for PV system analysis and design Photovoltaic System Design: Procedures Tools and Applications emphasizes the importance of using solar PV technologies for a number of end-use applications and examines growing interest in solar PV-based projects on a global scale. Written for the system designer/project developer/manufacturer dedicated to correctly sizing a PV system the book outlines various aspects of PV technology applications and programs. It describes key attributes system design requirements influence on climatic and site-specific parameters utilization of simulation procedures and expected performance. The author includes actual case studies for system designing procedures adopted by various companies and provides a framework for working through both direct and indirect variables under the actual system designing phase. A vital resource essential to your collection this book: Touches upon the role of renewable energy technologies in a holistic energy scenario Makes a clear categorization of off-grid and on-grid PV applications and discusses advantages and limitationsConsiders the potential of solar radiation availability Introduces PV system sizing procedures via the modern use of simulation softwaresPresents an analysis of actual PV power plant sites when designed via the use of simulation softwareDetermines the weak links in a PV systemBrings out the importance of capacity building initiatives vis-à-vis the available range of PV simulation software tools and proceduresPhotovoltaic System Design: Procedures Tools and Applications provides a clear understanding of the issues that can affect the operation and smooth running of PV facilities and aids in determining photovoltaic system sizing procedures from a variety of end-use considerations. The book encompasses civil mechanical electrical geotechnical and power systems engineering and is useful to industry professionals involved in solar power plant design. | Photovoltaic System Design Procedures Tools and Applications

GBP 44.99
1

Mechatronic Systems and Process Automation Model-Driven Approach and Practical Design Guidelines

Workflow Scheduling on Computing Systems