front cover of DC Distribution Systems and Microgrids
DC Distribution Systems and Microgrids
Tomislav Dragičević
The Institution of Engineering and Technology, 2018
DC electric power distribution systems have higher efficiency, better current carrying capacity and faster response when compared to conventional AC systems. They also provide a more natural interface with many types of renewable energy sources. Furthermore, there are fewer issues with reactive power flow, power quality and frequency regulation, resulting in a notably less complex control system. All these facts lead to increased applications of DC systems in modern power systems. Still, design and operation of these systems imposes a number of specific challenges, mostly related to lack of mature protection technology and operational experience, as well as very early development stage of standards regarding DC based power infrastructure.
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Design, Control and Monitoring of Tidal Stream Turbine Systems
Mohamed Benbouzid
The Institution of Engineering and Technology, 2023
The worldwide potential of electric power from tidal currents is potentially between 100 and 120 GW. The technology uses the ebb and flow currents off coasts to drive submerged turbines. The high load factor and the predictable resource characteristics make tidal energy an attractive, reliable power source. The technology is advancing rapidly towards maturity; several projects have now reached a relatively mature stage and are close to completion, but challenges remain. Topics for ongoing research include hydrodynamics and turbine design, as well as the power conversion interface (including the electric generator), control, and monitoring and maintenance challenges.
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Design of High-Efficiency Integrated AC-DC Convertors
Ke-Horng Chen
The Institution of Engineering and Technology, 2018
Increased efficiency in power electronic converters of all types and ratings is of considerable interest, not only from the viewpoint of improved converter thermal management but also from an environmental perspective. This important book describes the advantages and challenges, underlying the theory, and applications of high-efficiency AC-DC converters that are built into circuits, an increasingly popular design approach in power electronics.
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Designer's Guide to Energy Efficient Electrical Installations
The Institution of Engineering and Technology
The Institution of Engineering and Technology, 2016
BS 7671 has always been about capacity, safety and control of electrical installations. Could energy efficiency negate that?
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Designing Climate Solutions
A Policy Guide for Low-Carbon Energy
Hal Harvey with Robbie Orvis and Jeffrey Rissman
Island Press, 2018
With the effects of climate change already upon us, the need to cut global greenhouse gas emissions is nothing less than urgent. It’s a daunting challenge, but the technologies and strategies to meet it exist today. A small set of energy policies, designed and implemented well, can put us on the path to a low carbon future. Energy systems are large and complex, so energy policy must be focused and cost-effective. One-size-fits-all approaches simply won’t get the job done. Policymakers need a clear, comprehensive resource that outlines the energy policies that will have the biggest impact on our climate future, and describes how to design these policies well.

Designing Climate Solutions: A Policy Guide for Low-Carbon Energy is the first such guide, bringing together the latest research and analysis around low carbon energy solutions. Written by Hal Harvey, CEO of the policy firm Energy Innovation, with Robbie Orvis and Jeffrey Rissman of Energy Innovation, Designing Climate Solutions is an accessible resource on lowering carbon emissions for policymakers, activists, philanthropists, and others in the climate and energy community. In Part I, the authors deliver a roadmap for understanding which countries, sectors, and sources produce the greatest amount of greenhouse gas emissions, and give readers the tools to select and design efficient policies for each of these sectors. In Part II, they break down each type of policy, from renewable portfolio standards to carbon pricing, offering key design principles and case studies where each policy has been implemented successfully.

We don’t need to wait for new technologies or strategies to create a low carbon future—and we can’t afford to. Designing Climate Solutions gives professionals the tools they need to select, design, and implement the policies that can put us on the path to a livable climate future.
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front cover of Diagnosis and Fault Tolerance of Electrical Machines, Power Electronics and Drives
Diagnosis and Fault Tolerance of Electrical Machines, Power Electronics and Drives
Antonio J. Marques Cardoso
The Institution of Engineering and Technology, 2019
Electrical machines and drives, and their associated power electronics, are a key part of an industrialized society. Reliability is a major challenge in systems design, operation, and maintenance of these technologies. Unreliable systems drive up costs, so diagnostics and fault tolerance become important to help maintain the system and estimate its operational lifetime.
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Digital Protection for Power Systems
Salman K. Salman
The Institution of Engineering and Technology, 2022
Electric power systems have become much more complex in the past years, due to the integration of distributed generation including renewable energy sources and the challenges caused by intermittency of renewables. This complexity makes power systems potentially more vulnerable. However, use of computer-based protection methods (i.e., digital protection relays) supported by communication technology have helped in protecting electrical networks from faults to which they are subjected to.
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Digital Protection for Power Systems
A.T. Johns
The Institution of Engineering and Technology, 1995
Digital protection is based on the use of computers in power line relaying. Since the late 1960s, digital devices and techniques have been applied to almost all new protection schemes. Today the technology is moving towards standardised hardware platforms; at the software level, however, there remains a huge variety in approaches and protection algorithms.
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front cover of Digital Technologies for Solar Photovoltaic Systems
Digital Technologies for Solar Photovoltaic Systems
From general to rural and remote installations
Saad Motahhir
The Institution of Engineering and Technology, 2022
The rising share of photovoltaic (PV) energy requires sophisticated digital techniques for control, monitoring and integration with the grid. In remote areas, where no trained personnel might be nearby to intervene, such technologies are vital to ensure reliability and power quality, and to harness the solar potential of these locations. Moreover, tracking is necessary for moveable systems. Digital technologies can be used to enable and augment the use of PV energy in the grid, as well as for desalination, water pumping and hydrolysis.
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Distributed Energy Storage in Urban Smart Grids
Paulo F. Ribeiro
The Institution of Engineering and Technology, 2023
Renewable energy is key to stopping climate change, however, the intermittent nature of most forms of renewable energy generation poses a challenge. Energy storage is therefore a focus of research and development, particularly for urban areas with their limited space and high population density, which results in massive demand for both small distributed and utility-scale generation. Such locations require thorough integration of storage, with the urban energy system treated as a whole, and sufficient planning, sizing and siting, and upgrades to the existing power grid hardware.
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front cover of Distributed Generation
Distributed Generation
Nick Jenkins
The Institution of Engineering and Technology, 2010
Throughout the world there is concern over the impact of energy use on the environment (particularly CO2 emissions) and also over the security of fossil fuel supplies. Consequently, governments and energy planners are actively encouraging alternative and cleaner forms of energy production such as renewables (e.g. wind, solar, biomass) and combined heat and power (CHP).
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front cover of Distribution Switchgear
Distribution Switchgear
Stan Stewart
The Institution of Engineering and Technology, 2004
Switchgear plays a fundamental role within the power supply industry. It is required to isolate faulty equipment, divide large networks into sections for repair purposes and reconfigure networks in order to restore power supplies and control other equipment.
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front cover of Distribution System Analysis and Automation
Distribution System Analysis and Automation
Juan M. Gers
The Institution of Engineering and Technology, 2013
Distribution systems analysis employs a set of techniques that allow engineers to simulate, analyse, and optimise power distribution systems. Combined with automation, these techniques underpin the emerging concept of the 'smart grid', a digitally-enabled electrical supply grid that can monitor and respond to the behaviour of all its components in real time.
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front cover of Distribution Systems Analysis and Automation
Distribution Systems Analysis and Automation
Juan Manuel Gers
The Institution of Engineering and Technology, 2020
Distribution systems analysis employs a set of techniques to simulate, analyse, and optimise power distribution systems. Combined with automation, these techniques underpin the concept of the smart grid. In recent years, distribution systems have been facing growing challenges, due to increasing demand as well as the rising shares of distributed and volatile renewable energy sources.
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