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|a UAMI
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|a Power electronics and electric drives for traction applications /
|c edited by Gonzalo Abad.
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|a Chichester, West Sussex, United Kingdom :
|b John Wiley & Sons, Inc.,
|c [2016]
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|a 1 online resource
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|a Introduction / Gonzalo Abad -- Control of induction machines / Fernando Briz, Gonzalo Abad -- Control of synchronous machines / Fernando Briz, Gonzalo Abad -- Control of grid-connected converters / Aritz Milicua, Gonzalo Abad -- Railway traction / Xabier Agirre, Gonzalo Abad -- Ships / Inigo Atutxa, Gonzalo Abad -- Electric and hybrid vehicles / David Garrido, Gonzalo Abad -- Elevators / Ana Escalada, Gonzalo Abad.
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|a Includes bibliographical references and index.
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|a Power Electronics and Electric Drives for Traction Applications offers a practical approach to understanding power electronics applications in transportation systems ranging from railways to electric vehicles and ships. It is an application-oriented book for the design and development of traction systems accompanied by a description of the core technology. The first four introductory chapters describe the common knowledge and background required to understand the preceding chapters. After that, each application-specific chapter: highlights the significant manufacturers involved; provides a historical account of the technological evolution experienced; distinguishes the physics and mechanics; and where possible, analyses a real life example and provides the necessary models and simulationtools, block diagrams and simulation based validations. Key features: Surveys power electronics state-of-the-art in all aspects of traction applications. Presents vital design and development knowledge that is extremely important for the professional community in an original, simple, clear and complete manner. Offers design guidelines for power electronics traction systems in high-speed rail, ships, electric/hybrid vehicles, elevators and more applications. Application-specific chapters co-authored by traction industry expert. Learning supplemented by tutorial sections, case studies and MATLAB/Simulink-based simulations with data from practical systems. A valuable reference for application engineers in traction industry responsible for design and development of products as well as traction industry researchers, developers and graduate students on power electronics and motor drives needing a reference to the application examples.
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|f Copyright © Wiley
|g 2015
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
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650 |
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|a Traction drives.
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|a Electric driving.
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|a Transmissions de dispositif d'entraînement.
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|a Commande électrique.
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|a TECHNOLOGY & ENGINEERING
|x Mechanical.
|2 bisacsh
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|a Electric driving
|2 fast
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|a Traction drives
|2 fast
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1 |
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|a Abad, G.
|q (Gonzalo),
|d 1976-
|e editor.
|1 https://id.oclc.org/worldcat/entity/E39PCjy8JFjYMGdvxk4pHT9r9C
|
758 |
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|i has work:
|a Power electronics and electric drives for traction applications (Text)
|1 https://id.oclc.org/worldcat/entity/E39PCFY9KjXmJrJHFMg83cJJWC
|4 https://id.oclc.org/worldcat/ontology/hasWork
|
776 |
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8 |
|i Print version:
|z 9781118954423
|z 1118954424
|w (DLC) 2016018248
|w (OCoLC)926820127
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856 |
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0 |
|u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=4690014
|z Texto completo
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880 |
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|6 505-00/(S
|a Title Page -- Copyright -- Contents -- List of contributors -- Preface -- Chapter 1 Introduction -- 1.1 Introduction to the book -- 1.2 Traction applications -- 1.3 Electric drives for traction applications -- 1.3.1 General description -- 1.3.2 Different electric drive configurations -- 1.4 Classification of different parts of electric drives: converter, machines, control strategies, and energy sources -- 1.4.1 Converters -- 1.4.2 Machines -- 1.4.3 Control strategies -- 1.4.4 AC and DC voltage sources -- 1.5 Future challenges for electric drives -- 1.6 Historical evolution -- References -- Chapter 2 Control of induction machines -- 2.1 Introduction -- 2.2 Modeling of induction motors -- 2.2.1 Dynamic model of the induction motor using three-phase variables -- 2.2.2 Basics of space vector theory -- 2.2.3 Dynamic model of the induction machine using complex space vectors -- 2.2.4 Dynamic model in the stationary reference frame -- 2.2.5 Dynamic models in a synchronous reference frame -- 2.2.6 Torque and power equations -- 2.3 Rotor flux oriented vector control -- 2.3.1 Fundamentals of rotor flux oriented control -- 2.3.2 The stator voltage equation -- 2.3.3 Synchronous current regulators -- 2.3.4 Rotor flux estimation -- 2.4 Torque capability of the induction machine -- 2.4.1 Constant torque region -- 2.4.2 Flux-weakening region I (constant power region) -- 2.4.3 Flux-weakening region II (constant Temωm2) -- 2.5 Rotor flux selection -- 2.5.1 Rotor flux reference selection below rated speed -- 2.5.2 Accurate criteria for flux reference generation -- 2.5.3 Feedback based field weakening -- 2.6 Outer control loops -- 2.6.1 Speed control -- 2.6.2 Rotor flux control loop -- 2.7 Sensorless control -- 2.7.1 Sensorless control of induction machines using model-based methods -- 2.7.2 Sensorless control using saliency-tracking-based methods.
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