Power Quality in Power Systems, Electrical Machines, and Power-Electronic Drives uses current research and engineering practices, guidelines, standards, and regulations for engineering professionals and students interested in solving power quality problems in a cost effective, reliable, and safe manner within the context of renewable energy systems. The book contains chapters that address power quality across diverse facets of electric energy engineering, including AC and DC transmission and distribution lines; end-user applications such as electric machines, transformers, inductors, capacitors, wind power, and photovoltaic power plants; and variable-speed, variable-torque power-electronic drives. The book covers nonsinusoidal waveshapes, voltage disturbances, harmonic losses, aging and lifetime reductions, single-time events such as voltage dips, and the effects of variable-speed drives controlled by PWM converters. The book also reviews a corpus of techniques to mitigate power-quality problems, such as the optimal design of renewable energy storage devices (including lithium-ion batteries and fuel cells for automobiles serving as energy storage), and the optimal design of nonlinear loads for simultaneous efficiency and power quality.
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Professor Ewald Fuchs is a fellow of IEEE, his research interests are the effects of harmonics on power system components, variable-speed drives for improvement of industrial processes, conducted jointly with Unique Mobility, National Renewable Energy Labs, EPRI, Martin Marietta, and Teltech.
Professor Mohammad Masoum is an Engineering professor at Curtin University of Technology located in Perth, Western Australia, also he is a fellow of IEEE.
Power Quality in Power Systems and Electrical Machines, Third Edition has been updated throughout and covers new content on power quality issues and renewable implications, including revised and enhanced discussions related to renewable energy systems.
Providing background on causes, effects, standards, and measurements of power quality and harmonics as well as harmonic modeling of power systems including components and apparatus (electric machines). The final part of the book is devoted to power quality mitigation approaches and devices, extending to the analysis to power quality solutions for renewable energy systems.
Throughout the book worked examples and exercises provide practical applications, and tables, charts, and graphs offer useful data for the modeling and analysis of power quality issues.
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Taschenbuch. Zustand: Neu. Neuware - Power Quality in Power Systems, Electrical Machines, and Power-Electronic Drives uses current research and engineering practices, guidelines, standards, and regulations for engineering professionals and students interested in solving power quality problems in a cost effective, reliable, and safe manner within the context of renewable energy systems. The book contains chapters that address power quality across diverse facets of electric energy engineering, including AC and DC transmission and distribution lines; end-user applications such as electric machines, transformers, inductors, capacitors, wind power, and photovoltaic power plants; and variable-speed, variable-torque power-electronic drives. The book covers nonsinusoidal waveshapes, voltage disturbances, harmonic losses, aging and lifetime reductions, single-time events such as voltage dips, and the effects of variable-speed drives controlled by PWM converters. The book also reviews a corpus of techniques to mitigate power-quality problems, such as the optimal design of renewable energy storage devices (including lithium-ion batteries and fuel cells for automobiles serving as energy storage), and the optimal design of nonlinear loads for simultaneous efficiency and power quality. Artikel-Nr. 9780128178560
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