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Development of brushless self-excited and self-regulated synchronous generating system for wind and hydro generators / Likaa Fahmi Ahmed Izzat.

By: Material type: TextTextSeries: Elektrische Energiesysteme ; Band 4Publisher: Kassel : Kassel University Press, [2014]Copyright date: ©2014Description: 1 online resource (314 pages) : illustrations (some color)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783862190195
  • 3862190196
Subject(s): Genre/Form: Additional physical formats: Erscheint auch als:: Izzat, Likaa Fahmi Ahmed. Development of Brushless Self-excited and Self-regulated Synchronous Generating System for Wind and Hydro GeneratorsDDC classification:
  • 621.3
LOC classification:
  • TJ163.9 .I99 2014eb
Online resources:
Contents:
Front cover ; Series title ; Title page ; Imprint ; Acknowledgements ; Summary; Zusammenfassung; Contents; 1 General Introduction ; 1.1 Wind generating systems and problems formulation; 1.2 Research objectives; 1.3 Methodology; 1.4 Dissertation structure; 2 Brushless Synchronous Generating Systems ; 2.1 General structure of brushless capacitor-exciter synchronous generator (BCESG) ; 2.1.1 Basic construction; 2.1.2 Description and operation of BCESG system; 2.2 The state of the art and comparison with other operation concepts; 2.2.1 Brushless cylindrical-rotor type synchronous generator.
2.2.2 Synchronous generator with arrangement for brushless excitation2.2.3 Capacitor-excitation variable-resistor brushless synchronous generator; 2.2.4 Thermally sensitive-resistance type brushless synchronous generator; 2.2.5 Brushless single-phase synchronous generator with A.C. exciter; 2.2.6 Inductor type brushless generator (ITBG); 2.2.7 Brushless synchronous generator utilizing the 5th -space harmonic component; 2.2.8 Brushless synchronous machine using amortisseur windings; 2.2.9 Brushless cylindrical-rotor synchronous generator; 2.2.10 Brushless single-phase synchronous generator.
2.2.11 Brushless generator with a novel voltage regulator2.3 Main features of the presented developed BCESG; 3 Comprehensive Analysis, Parameters and Characteristics; 3.1 Developed brushless capacitor-exciter synchronous generator (BCESG); 3.1.1 The features in analyzing the developed BCESG; 3.1.2 The assumptions in analyzing the developed BCESG; 3.2 The voltage equations of developed BCESG Model; 3.3 Comparison with the improved self-excited synchronous generator (BSESG) Model; 3.4 Flux linkage of developed BCESG; 3.5 No-load characteristics; 3.5.1 Approximate solution of currents.
Dissertation note: Kassel University 2013
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Kassel University 2013

Includes bibliographical references.

Online resource; title from PDF title page (ebrary, viewed February 18, 2014).

Front cover ; Series title ; Title page ; Imprint ; Acknowledgements ; Summary; Zusammenfassung; Contents; 1 General Introduction ; 1.1 Wind generating systems and problems formulation; 1.2 Research objectives; 1.3 Methodology; 1.4 Dissertation structure; 2 Brushless Synchronous Generating Systems ; 2.1 General structure of brushless capacitor-exciter synchronous generator (BCESG) ; 2.1.1 Basic construction; 2.1.2 Description and operation of BCESG system; 2.2 The state of the art and comparison with other operation concepts; 2.2.1 Brushless cylindrical-rotor type synchronous generator.

2.2.2 Synchronous generator with arrangement for brushless excitation2.2.3 Capacitor-excitation variable-resistor brushless synchronous generator; 2.2.4 Thermally sensitive-resistance type brushless synchronous generator; 2.2.5 Brushless single-phase synchronous generator with A.C. exciter; 2.2.6 Inductor type brushless generator (ITBG); 2.2.7 Brushless synchronous generator utilizing the 5th -space harmonic component; 2.2.8 Brushless synchronous machine using amortisseur windings; 2.2.9 Brushless cylindrical-rotor synchronous generator; 2.2.10 Brushless single-phase synchronous generator.

2.2.11 Brushless generator with a novel voltage regulator2.3 Main features of the presented developed BCESG; 3 Comprehensive Analysis, Parameters and Characteristics; 3.1 Developed brushless capacitor-exciter synchronous generator (BCESG); 3.1.1 The features in analyzing the developed BCESG; 3.1.2 The assumptions in analyzing the developed BCESG; 3.2 The voltage equations of developed BCESG Model; 3.3 Comparison with the improved self-excited synchronous generator (BSESG) Model; 3.4 Flux linkage of developed BCESG; 3.5 No-load characteristics; 3.5.1 Approximate solution of currents.

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