front cover of Large Scale Grid Integration of Renewable Energy Sources
Large Scale Grid Integration of Renewable Energy Sources
Antonio Moreno-Munoz
The Institution of Engineering and Technology, 2017
As renewable energy sources have reached grid parity in many countries, the key to further growth of the share of renewables in the power mix is their integration with the power system. This requires a number of technical developments, for example in power electronics, to meet the need for increased flexibility and rapid dispatch. This book explores the new approaches to meet these challenges, such as increasing interconnection capacity among geographical areas, hybridization of different distributed energy resources and building up demand response capabilities.
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Large Scale Grid Integration of Renewable Energy Sources
Solutions and technologies
Antonio Moreno-Muñoz
The Institution of Engineering and Technology, 2024
Key to the further growth of shares of renewables is their integration with the existing grid system including EV and sector coupling. This in turn requires technical developments to enable flexibility and dispatch. Approaches to meeting these challenges include hybridization of different distributed energy resources, forecasting and control, storage and demand response, and modelling. Technological advances are also being accompanied by changes in business models.
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Leaky Waves in Electromagnetics
Paolo Burghignoli
The Institution of Engineering and Technology, 2024
Leaky waves can explain observed phenomena associated with both antennas and fundamental electromagnetic propagation with minimal numerical calculation. The subject is of current interest as various forms of leaky-wave antennas continue to be developed. Also, the underlying theory is proving useful to explain new phenomena such as giant transmission through arrays of sub-wavelength holes, a discovery that has generated considerable interest in the physics and engineering communities.
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Lean Product Development
A manager's guide
Colin Mynott
The Institution of Engineering and Technology, 2012
Lean product development (LPD) is the application of lean principles to product development, aiming to develop new or improved products that are successful in the market. It is a cross-functional activity that seeks to uncover product knowledge hidden within the end-to-end production flow, typically in the hand-over points between functional units. LPD deals with the complete process from gathering and generating ideas, through assessing potential success, to developing concepts, evaluating them to create a best concept, detailing the product, testing/developing it and handing over to the manufacture. LPD is performed against a background of continuously assessing and reducing risk of market failure.
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The Life and Times of A.D. Blumlein
Russell Burns
The Institution of Engineering and Technology, 2000
Alan Dower Blumlein was a genius and has been described as the greatest British electronics engineer of the twentieth century. Although he was tragically killed at the age of 38, he contributed enormously to the fields of telephony and electrical measurements, monophonic and stereophonic recording and reproduction, high definition television, electronics, antennas and cables, and radar systems of various types. His accidental death in June 1942 was described by an Air Chief Marshal as 'a catastrophe', and the Secretary of State for Air said that 'it would be impossible to over-rate the importance of the work on which [Blumlein was] engaged': his loss was a 'national disaster'. He was responsible for saving many thousands of lives during the Second World War, and his endeavours in peacetime led to pleasure being given to millions of people.
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Light Filaments
Structures, challenges and applications
Jean-Claude Diels
The Institution of Engineering and Technology, 2022
A laser of sufficient intensity traveling through air will - by itself - engineer a narrow channel over which light will propagate for tens or even hundreds of meters. Such filaments of laser light were first created at the end of the twentieth century, and investigators are now beginning to explore new applications for them.
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Lightning Electromagnetics
Vernon Cooray
The Institution of Engineering and Technology, 2012
Lightning research is an interdisciplinary subject where several branches of engineering and physics converge. Lightning Electromagnetics is a book that caters for the needs of both physicists and engineers. It provides: The physicist with information on how to simulate: the charge generation in thunderclouds, different discharge processes in air that ultimately lead to a lightning flash, and the mechanism through which energetic radiation in the form of X-rays and Gamma rays are produced by lightning flashes; The power engineer with several numerical tools to study the interaction of lightning flashes with power transmission and distribution systems; The telecommunication engineer with numerical procedures with which to calculate the electromagnetic fields generated by lightning flashes and their interactions with overhead and underground telecommunication systems; The electromagnetic specialist with the basic theory necessary to simulate the propagation of lightning electromagnetic fields over the surface of the Earth; The atmospheric scientist with numerical procedures to quantify interactions between lightning flashes and the Earth's atmosphere, including the production of NOx by lightning flashes occurring in the atmosphere. This book also contains a chapter on the stimulation of visual phenomena in humans by electromagnetic fields of lightning flashes, which is essential reading for those who are interested in ball lightning.
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Lightning Electromagnetics
Electrical processes and effects, Volume 2
Vernon Cooray
The Institution of Engineering and Technology, 2022
Lightning is important for all scientists and engineers involved with electric installations. It is gaining further relevance since climate warming is causing an increase in lightning strikes, and since the rising numbers of renewable power generators, the electricity grid, and charging infrastructure are susceptible to lightning damage. This is the second edition to this comprehensive work.
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Lightning Electromagnetics
Return stroke modelling and electromagnetic radiation, Volume 1
Vernon Cooray
The Institution of Engineering and Technology, 2022
Lightning is important for all scientists and engineers involved with electric installations. It is gaining further relevance since climate warming is causing an increase in lightning strikes, and since the rising numbers of renewable power generators, the electricity grid, and charging infrastructure are susceptible to lightning damage. This is the second edition to this comprehensive work.
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The Lightning Flash
Vernon Cooray
The Institution of Engineering and Technology, 2014
This updated and expanded new edition of Cooray's classic text provides the reader with a thorough background in almost every aspect of lightning and its impact on electrical and electronic equipment. The contents range from basic discharge processes in air through transient electromagnetic field generation and interaction with overhead lines and underground cables, to lightning protection and testing techniques. New to this edition are discussions of high-speed video recordings of lightning; rocket-and-wire triggered lightning experiments; tower initiated lightning discharges; upper atmospheric electrical discharges; attachment of lightning flashes to grounded structures; energetic radiation from thunderstorms and lightning; global lightning nitrogen oxides production; and lightning and global temperature change.
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The Lightning Flash
Vernon Cooray
The Institution of Engineering and Technology, 2003
This unique book provides the reader with a thorough background in almost every aspect of lightning and its impact on electrical and electronic equipment. The contents range from basic discharge processes in air through transient electromagnetic field generation and interaction with overhead lines and underground cables, to lightning protection and testing techniques. This book is of value to anyone designing, installing or commissioning equipment which needs to be secured against lightning strikes, as well as being a sound introduction to research students working in the field.
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Lightning Interaction with Power Systems
Alexandre Piantini
The Institution of Engineering and Technology, 2019
The need to improve the reliability and robustness of power systems and smart grids makes protection of sensitive equipment and power transmission and distribution lines against lightning-related effects a primary concern. Renewable electricity generation capacity has been increasing all over the world, and lightning can cause failures either by hitting the turbines or panels directly or inducing transients on the control systems that lead to equipment failure, malfunction or degradation.
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Lightning Interaction with Power Systems
Alexandre Piantini
The Institution of Engineering and Technology, 2019
The need to improve the reliability and robustness of power systems and smart grids makes protection of sensitive equipment and power transmission and distribution lines against lightning-related effects a primary concern. Renewable electricity generation capacity has been increasing all over the world, and lightning can cause failures either by hitting the turbines or panels directly or inducing transients on the control systems that lead to equipment failure, malfunction or degradation.
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Lightning Interaction with Power Systems
Applications, Volume 2
Alexandre Piantini
The Institution of Engineering and Technology, 2020
The need to improve the reliability and robustness of power systems and smart grids makes protection of sensitive equipment and power transmission and distribution lines against lightning-related effects a primary concern. Renewable electricity generation capacity has been increasing all over the world, and lightning can cause failures either by hitting the turbines or panels directly or inducing transients on the control systems that lead to equipment failure, malfunction or degradation.
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Lightning Interaction with Power Systems
Fundamentals and modelling, Volume 1
Alexandre Piantini
The Institution of Engineering and Technology, 2020
The need to improve the reliability and robustness of power systems and smart grids makes protection of sensitive equipment and power transmission and distribution lines against lightning-related effects a primary concern. Renewable electricity generation capacity has been increasing all over the world, and lightning can cause failures either by hitting the turbines or panels directly or inducing transients on the control systems that lead to equipment failure, malfunction or degradation.
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Lightning Protection
Vernon Cooray
The Institution of Engineering and Technology, 2009
Lightning is a natural phenomenon that has always fascinated humans. It is also a destructive force, and the science of protecting humans and their belongings on earth is called lightning protection. This book provides the reader with a thorough background in almost every aspect of lightning protection. The contents of the book, distributed over 23 chapters, covers all aspects of lightning protection including lightning parameters of engineering interest, the evaluation of the risk imposed by lightning strikes, the art of installing lightning protection systems on various structures, basic principles and procedures necessary to protect electronic equipment in buildings from lightning flashes, grounding in lightning protection, the function of surge protection devices, protection of power transmission lines and telecommunication towers from lightning, the interaction of lightning flashes with wind turbines, various aspects of lightning strikes to trees, medical and engineering aspects of lightning strikes to humans, and lightning warning systems. In addition to providing essential information on lightning protection for engineers and scientists, the book is intended for use as a textbook on lightning protection at both undergraduate and postgraduate level.
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Lightning-Induced Effects in Electrical and Telecommunication Systems
Yoshihiro Baba
The Institution of Engineering and Technology, 2021
Power and telecommunications systems are growing increasingly complex. This increases their vulnerability to lightning-related effects.
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front cover of Lithium-ion Batteries Enabled by Silicon Anodes
Lithium-ion Batteries Enabled by Silicon Anodes
Chunmei Ban
The Institution of Engineering and Technology, 2021
Deploying lithium-ion (Li-ion) batteries depends on cost-effective electrode materials with high energy and power density to facilitate lower weight and volume. Si-based anode materials theoretically offer superior lithium storage capacity. Replacing a graphite anode with high-capacity materials such as silicon will further improve the energy density. Durable, low-cost, and high-energy-density materials are vital to developing plug-in electric vehicles as affordable and convenient as gasoline-powered ones, while reducing carbon emissions.
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Local Access Network Technologies
Paul France
The Institution of Engineering and Technology, 2004
The business of telecommunications is undergoing a period of change driven by changes in regulation, increasing demands for services and the development of new access technologies. The market structure of telecommunications is evolving rapidly as new and existing players strive to compete in an increasingly volatile market, while the advent of new data services is placing greater demands on the network as operators strive to offer new broadband services. Underpinning much of this change is the access technology itself, not only in the transitional form of copper twisted pairs, but also increasingly through the use of new fibre, radio and copper systems. The dominant cost of most telecommunication networks is the access network itself, which typically can demand up to 80% of the total investment required.
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Local Energy
Distributed generation of heat and power
Janet Wood
The Institution of Engineering and Technology, 2008
In future the UK's energy supplies, for both heat and power, will come from much more diverse sources. In many cases this will mean local energy projects serving a local community or even a single house. What technologies are available? Where and at what scale can they be used? How can they work effectively with our existing energy networks? This book explores these power and heat sources, explains the characteristics of each and examines how they can be used.
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Location and Personalisation
Delivering online and mobility services
Daniel Ralph
The Institution of Engineering and Technology, 2004
The world is charging towards the new network technologies of broadband and 3G, and new application technologies face the challenge of where they can be used. This book takes a pragmatic look at two particular application technologies - location and personalisation - and presents an understanding of the technical and business impact of these technologies. With a combination of overview papers, detailed technical case studies and a deep understanding of actual implementatio of these services within a telecommunications environment, this book will help those wishing to deliver improved services based on these capabilities. Other key topics covered include CRM and content management.
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Lord Kelvin
His influence on electrical measurements and units
Paul Tunbridge
The Institution of Engineering and Technology, 1992
Lord Kelvin (William Thomson), arguably Britain's most eminent scientist after Newton, spent much of his life in work which led to the development of today's electrical units and standards. Despite his influence, there are few biographies of stature (largely due to the abstruse nature of much of his technical research). This treatment concentrates upon his work in three phases; discovery of the fundamental concepts and coding them into universal laws, leading the adoption of the metric system, and securing worldwide use of units and standards (now the IEC system).
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Low Carbon Mobility for Future Cities
Principles and applications
Hussein Dia
The Institution of Engineering and Technology, 2017
Urban Transport energy efficiency and environmental sustainability continue to present big challenges for city leaders and policy think tanks. As the share of the world's population living in cities grows to nearly 70 per cent between now and 2050, urban transport energy consumption is forecast to double to meet the travel demand in the world's future cities. This urban growth will also dramatically change the scale and nature of our communities, and put a tremendous strain on the built environment and infrastructure that delivers vital services like transport.
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Low Electromagnetic Emission Wireless Network Technologies
5G and beyond
Muhammad Ali Imran
The Institution of Engineering and Technology, 2020
Mobile communication systems rely on radiofrequency waves to operate. Given the popularity and ubiquity of mobile communication devices as well as network densification, the level of Electromagnetic Field (EMF) exposure to the public is expected to rise significantly over the next few years. Although there is no clear evidence linking short-term exposure to EMF emission from wireless communication systems with adverse health effects, the International Agency for Research on Cancer (IARC) has concluded that EMF radiation is possibly carcinogenic. To cope with the concerns of the general public, the European Environmental Agency has recommended non-technical precautionary approaches to minimize exposure to EMF emissions. Rather than relying on these non-technical approaches, EMF, latency, network resilience and connection density, alongside traditional criteria such as spectral efficiency and energy efficiency are expected to take centre stage in the development of 5G systems.
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Low Power and Low Voltage Circuit Design with the FGMOS Transistor
Esther Rodriguez-Villegas
The Institution of Engineering and Technology, 2006
Motivated by consumer demand for smaller, more portable electronic devices that offer more features and operate for longer on their existing battery packs, cutting edge electronic circuits need to be ever more power efficient. For the circuit designer, this requires an understanding of the latest low voltage and low power (LV/LP) techniques, one of the most promising of which makes use of the floating gate MOS (FGMOS) transistor.
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Low-power HF Microelectronics
A unified approach
Gerson A.S. Machado
The Institution of Engineering and Technology, 1996
This book presents a thorough and integrated treatment of key topics in the field of low-voltage, low-power, mixed-mode design for the manufacture of low-cost, high-performance, robust integrated circuits. It brings together innovative modelling, simulation and design techniques in CMOS, SOI, GaAs and BJT, optimally combining process, device and design knowledge of low-voltage, high-frequency systems, including smart sensors.
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