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Induction Machines Handbook Transients Control Principles Design and Testing

Induction Machines Handbook Transients Control Principles Design and Testing

Induction Machines Handbook: Transients Control Principles Design and Testing presents a practical up-to-date treatment of intricate issues with induction machines (IM) required for design and testing in both rather constant- and variable-speed (with power electronics) drives. It contains ready-to-use industrial design and testing knowledge with numerous case studies to facilitate a thorough assimilation of new knowledge. Individual Chapters 1 through 14 discuss in detail the following: Three- and multiphase IM transients Single-phase source IM transients Super-high-frequency models and behavior of IM Motor specifications and design principles IM design below 100 kW and constant V1 and f1 IM design above 100 kW and constant V1 and f1 IM design principles for variable speed Optimization design Single-phase IM design Three-phase IM generators Single-phase IM generators Linear induction motors Testing of three-phase IMs Single-phase IM testing Fully revised and amply updated to add the new knowledge of the last decade this third edition includes special sections on Multiphase IM models for transients Doubly fed IMs models for transients Cage-rotor synchronized reluctance motors Cage-rotor PM synchronous motor Transient operation of self-excited induction generator Brushless doubly fed induction motor/generators Doubly fed induction generators with D. C. output Linear induction motor control with end effect Recent trends in IM testing with power electronics Cage-PM rotor line-start IM testing Linear induction motor (LIM) testing This up-to-date book discusses in detail the transients control principles and design and testing of various IMs for line-start and variable-speed applications in various topologies with numerous case studies. It will be of direct assistance to academia and industry in conceiving designing fabricating and testing IMs (for the future) of various industries from home appliances through robotics e-transport and renewable energy conversion. | Induction Machines Handbook Transients Control Principles Design and Testing

GBP 140.00
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Modeling and Control of AC Machine using MATLAB /SIMULINK

Modeling and Control of AC Machine using MATLAB /SIMULINK

This book introduces electrical machine modeling and control for electrical engineering and science to graduate undergraduate students as well as researchers who are working on modeling and control of electrical machines. It targets electrical engineering students who have no time to derive mathematical equations for electrical machines in particular induction machine (IM) and doubly fed induction machines (DFIM). The main focus is on the application of field oriented control technique to induction motor (IM) and doubly fed induction motor (DFIM) in details and since the induction motors have many drawback using this technique therefore the application of a nonlinear control technique (feedback linearization) is applied to a reduced order model of DFIM to enhance the performance of doubly fed induction motor. FeaturesServes as text book for electrical motor modeling simulation and control; especially modeling of induction motor and doubly fed induction motor using different frame of references. Vector control (field oriented control) is given in more detailed and is applied to induction motor. A nonlinear controller is applied to a reduced model of an doubly induction motor associated with a linear observer to estimate the unmeasured load torque which is used to enhance the performance of the vector control to doubly fed induction motor. Access to the full MATLAB/SIMULINK blocks for simulation and control. | Modeling and Control of AC Machine using MATLAB®/SIMULINK

GBP 18.99
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Computational Modelling of Concrete Structures Proceedings of the Conference on Computational Modelling of Concrete and Concrete Structures

Computational Modelling of Concrete Structures Proceedings of the Conference on Computational Modelling of Concrete and Concrete Structures

The EURO-C conference series (Split 1984 Zell am See 1990 Innsbruck 1994 Badgastein 1998 St. Johann im Pongau 2003 Mayrhofen 2006 Schladming 2010 St. Anton am Arlberg 2014 and Bad Hofgastein 2018) brings together researchers and practising engineers concerned with theoretical algorithmic and validation aspects associated with computational simulations of concrete and concrete structures. Computational Modelling of Concrete Structures reviews and discusses research advancements and the applicability and robustness of methods and models for reliable analysis of complex concrete reinforced concrete and pre-stressed concrete structures in engineering practice. The contributions cover both computational mechanics and computational modelling aspects of the analysis and design of concrete and concrete structures: Multi-scale cement and concrete research: experiments and modelling Aging concrete: from very early ages to decades-long durability Advances in material modelling of plain concrete Analysis of reinforced concrete structures Steel-concrete interaction fibre-reinforced concrete and masonry Dynamic behaviour: from seismic retrofit to impact simulation Computational Modelling of Concrete Structures is of special interest to academics and researchers in computational concrete mechanics as well as industry experts in complex nonlinear simulations of concrete structures. | Computational Modelling of Concrete Structures Proceedings of the Conference on Computational Modelling of Concrete and Concrete Structures

GBP 290.00
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Crime Scene Processing and Investigation Workbook Second Edition