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Electric Generators Handbook - Two Volume Set

  • Format
  • Bog, sampak
  • Engelsk
  • 1100 sider

Beskrivelse

Electric Generators Handbook, Second Edition: Two-Volume Set supplies state-of-the-art tools necessary to design, validate, and deploy the right power generation technologies to fulfill tomorrow's complex energy needs.

The first volume, Synchronous Generators, explores large- and medium-power synchronous generator topologies, steady state, modeling, transients, control, design, and testing. Numerous case studies, worked-out examples, sample results, and illustrations highlight the concepts. Fully revised and updated to reflect the last decade’s worth of progress in the field, the Second Edition adds coverage of high-power wind generators with fewer or no PMs, PM-assisted DC-excited salient pole synchronous generators, autonomous synchronous generators’ control, line switching parameter identification for isolated grids, synthetic back-to-back load testing with inverter supply, and more.

The second volume, Variable Speed Generators, provides extensive coverage of variable speed generators in distributed generation and renewable energy applications around the world. Numerous design and control examples illustrate the exposition. Fully revised and updated to reflect the last decade’s worth of progress in the field, the Second Edition adds material on doubly fed induction generator control under unbalanced voltage sags and nonlinear loads, interior permanent magnet claw-pole-alternator systems, high power factor Vernier PM generators, PM-assisted reluctance synchronous motors/generators for electric hybrid vehicles, and more.

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Detaljer
  • SprogEngelsk
  • Sidetal1100
  • Udgivelsesdato08-10-2015
  • ISBN139781498723411
  • Forlag CRC Press Inc
  • FormatSampak
  • Udgave2
Størrelse og vægt
  • Vægt2267 g
  • coffee cup img
    10 cm
    book img
    17,8 cm
    25,4 cm

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    Variable speed generators Electric generators Hybrid electric vehicles Generators Synchronous generators Air Gap DC/DC-Converter DC-DC Converter Reactive Power SGS Cogging torque Equivalent Circuit AC AC Converter Automotive Claw-Pole-Rotor Generator Systems DC Link Voltage Electric Generator Principles direct power control Electric Energy Generators Electric Hybrid Vehicles Flux Reversal Permanent Magnet Generator Systems Claw Pole Constant Power Speed Range CRIg Flux Reversal Diode Rectifier HEVs Large-Power Synchronous Generators Induction Starters Medium-Power Synchronous Generators Modeling for Transients Modelling for Transients Permanent-Magnet-Assisted Reluctance Synchronous Starters PM Generator Systems Permanent Magnet Synchronous Generator Systems Prime Movers PM-Assisted Reluctance Synchronous Alternators Rotor Position Rotor Poles Self-Excited Induction Generators Rotor Voltage Linear Motion Alternators Synchronous Generators in Power Systems Synchronous Generator Testing Induction Alternators Switched Reluctance Generator Control Synchronous Generator Modeling Wound-Rotor Induction Generator Steady State SRGs Stator-Converter-Controlled Induction Generators Switched Reluctance Generators Wound-Rotor Induction Generator Design Wound-Rotor Induction Generator Transients WRIG Wound-Rotor Induction Generator Testing Permanent-Magnet-Assisted Reluctance Synchronous Alternators PM-Assisted Reluctance Synchronous Starters Machine Side Converter magnetic saturation Permanent Magnet Generator Systems PWM Converter Synchronous Generator Control Synchronous Generator Steady State Synchronous Generator Topologies Rotor Flux Pm Pole PM Synchronous Generator Systems Power Angle Wound-Rotor Induction Generators Synchronous Generator Modelling Transverse Flux Permanent Magnet Generator Systems Variable Generators Synchronous Generator Design Wound-Rotor Induction Generator Control
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