Ion Boldea
Induction Machines Handbook (eBook, ePUB)
Transients, Control Principles, Design and Testing
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Ion Boldea
Induction Machines Handbook (eBook, ePUB)
Transients, Control Principles, Design and Testing
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This volume presents a practical up to date treatment of intricate issues with induction machine (IM) required for design and testing both in rather constant and variable speed drives. It contains ready to use in industrial design and testing knowledge with numerous case studies to facilitate thorough assimilation of new knowledge.
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This volume presents a practical up to date treatment of intricate issues with induction machine (IM) required for design and testing both in rather constant and variable speed drives. It contains ready to use in industrial design and testing knowledge with numerous case studies to facilitate thorough assimilation of new knowledge.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 456
- Erscheinungstermin: 19. Mai 2020
- Englisch
- ISBN-13: 9781000056822
- Artikelnr.: 59492592
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 456
- Erscheinungstermin: 19. Mai 2020
- Englisch
- ISBN-13: 9781000056822
- Artikelnr.: 59492592
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Ion Boldea, IEEE Life Fellow and Professor Emeritus at University Politehnica Timisoara, Romania, has taught, researched, and extensively published papers and books (monographs and textbooks) for more than 45 years related to rotary and linear electric motor/generator variable-speed drives, and maglevs. He was a visiting professor in the US and UK for more than 5 years between 1973 and the present.
He was granted four IEEE Best Paper Awards, has been a member of IEEE IAS, IE MEC, and IDC since 1992, was the guest editor of numerous special sections in IEEE Trans, vol. IE, IA, delivered keynote addresses at several IEEE-sponsored International Conferences, participated in IEEE Conference tutorials, and has been an IEEE IAS distinguished lecturer since 2008 (with lectures in the US, Brazil, South Korea, Denmark, Italy, etc.). He has conducted periodic intensive graduate courses for academia and industry in the US and Denmark for the last 20 years.
He was a general chair of ten biannual IEEE-sponsored OPTIM International Conferences (www.info-optim.ro) and is the founding and current chief editor, since 2000, of the internet-based Journal of Electrical Engineering (www.jee.ro).
As a full member of the Romanian Academy, he received the 2015 IEEE Nikola Tesla Award for his contributions to the development of rotary and linear electric motor/generator drives and maglevs modeling, design, testing, and control in industrial applications.
He was granted four IEEE Best Paper Awards, has been a member of IEEE IAS, IE MEC, and IDC since 1992, was the guest editor of numerous special sections in IEEE Trans, vol. IE, IA, delivered keynote addresses at several IEEE-sponsored International Conferences, participated in IEEE Conference tutorials, and has been an IEEE IAS distinguished lecturer since 2008 (with lectures in the US, Brazil, South Korea, Denmark, Italy, etc.). He has conducted periodic intensive graduate courses for academia and industry in the US and Denmark for the last 20 years.
He was a general chair of ten biannual IEEE-sponsored OPTIM International Conferences (www.info-optim.ro) and is the founding and current chief editor, since 2000, of the internet-based Journal of Electrical Engineering (www.jee.ro).
As a full member of the Romanian Academy, he received the 2015 IEEE Nikola Tesla Award for his contributions to the development of rotary and linear electric motor/generator drives and maglevs modeling, design, testing, and control in industrial applications.
1. Induction Machine Transients 2. Single-Phase IM Transients 3. Super-High-Frequency Models and Behaviour of IMs 4. Motor Specifications and Design Principles 5. IM Design below 100 KW and Constant V and f (Size Your Own IM) 6. Induction Motor Design above 100 KW and Constant V and f (Size Your Own IM) 7. Induction Machine Design for Variable Speed 8. Optimization Design Issues 9. Single-Phase IM Design 10. Three-Phase Induction Generators 11. Single-Phase Induction Generators 12. Linear Induction Motors 13. Testing of Three-Phase IMs 14. Single-Phase IM Testing
1. Induction Machines: An Introduction 2. Construction Aspects and
Operation Principles 3. Magnetic, Electric, and Insulation Materials for IM
4. Induction Machine Windings and Their mmfs 5. The Magnetisation Curve and
Inductance 6. Leakage Inductances and Resistances 7. Steady-State
Equivalent Circuit and Performance 8. Starting and Speed Control Methods 9.
Skin and On-Load Saturation Effects 10. Airgap Field Space Harmonics,
Parasitic Torques, Radial Forces, and Noise Basics 11. Losses in Induction
Machines 12. Thermal Modelling and Cooling 13. Single-Phase Induction
Machines: The Basics 14. Single-Phase Induction Motors: Steady State
Operation Principles 3. Magnetic, Electric, and Insulation Materials for IM
4. Induction Machine Windings and Their mmfs 5. The Magnetisation Curve and
Inductance 6. Leakage Inductances and Resistances 7. Steady-State
Equivalent Circuit and Performance 8. Starting and Speed Control Methods 9.
Skin and On-Load Saturation Effects 10. Airgap Field Space Harmonics,
Parasitic Torques, Radial Forces, and Noise Basics 11. Losses in Induction
Machines 12. Thermal Modelling and Cooling 13. Single-Phase Induction
Machines: The Basics 14. Single-Phase Induction Motors: Steady State
1. Induction Machine Transients 2. Single-Phase IM Transients 3. Super-High-Frequency Models and Behaviour of IMs 4. Motor Specifications and Design Principles 5. IM Design below 100 KW and Constant V and f (Size Your Own IM) 6. Induction Motor Design above 100 KW and Constant V and f (Size Your Own IM) 7. Induction Machine Design for Variable Speed 8. Optimization Design Issues 9. Single-Phase IM Design 10. Three-Phase Induction Generators 11. Single-Phase Induction Generators 12. Linear Induction Motors 13. Testing of Three-Phase IMs 14. Single-Phase IM Testing
1. Induction Machines: An Introduction 2. Construction Aspects and
Operation Principles 3. Magnetic, Electric, and Insulation Materials for IM
4. Induction Machine Windings and Their mmfs 5. The Magnetisation Curve and
Inductance 6. Leakage Inductances and Resistances 7. Steady-State
Equivalent Circuit and Performance 8. Starting and Speed Control Methods 9.
Skin and On-Load Saturation Effects 10. Airgap Field Space Harmonics,
Parasitic Torques, Radial Forces, and Noise Basics 11. Losses in Induction
Machines 12. Thermal Modelling and Cooling 13. Single-Phase Induction
Machines: The Basics 14. Single-Phase Induction Motors: Steady State
Operation Principles 3. Magnetic, Electric, and Insulation Materials for IM
4. Induction Machine Windings and Their mmfs 5. The Magnetisation Curve and
Inductance 6. Leakage Inductances and Resistances 7. Steady-State
Equivalent Circuit and Performance 8. Starting and Speed Control Methods 9.
Skin and On-Load Saturation Effects 10. Airgap Field Space Harmonics,
Parasitic Torques, Radial Forces, and Noise Basics 11. Losses in Induction
Machines 12. Thermal Modelling and Cooling 13. Single-Phase Induction
Machines: The Basics 14. Single-Phase Induction Motors: Steady State