Lukasz Kocewiak: Modelling of Power System Components and Power Converters for Frequency Domain Analysis, Gebunden
Modelling of Power System Components and Power Converters for Frequency Domain Analysis
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- Verlag:
- Wiley, 12/2026
- Einband:
- Gebunden
- Sprache:
- Englisch
- ISBN-13:
- 9781394325955
- Umfang:
- 112 Seiten
- Erscheinungstermin:
- 3.12.2026
- Hinweis
-
Achtung: Artikel ist nicht in deutscher Sprache!
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Klappentext
Modelling of power-electronic-based power systems for frequency domain studies
The number of converter-based units in power systems is rapidly increasing and that requires novel approach towards modelling, simulations, and analysis to trustfully reflect the power system behavior from power quality and stability perspective.Modelling of Power System Components and Power Converters for Frequency Domain Analysis delivers a comprehensive summary of state-of-the-art knowledge in the field as well as newest research and industrial developments.
The book also provides information on:
- Harmonic and stability phenomena in modern power systems
- State-of-the-art frequency domain models for harmonic propagation studies as well as small-signal stability studies
- Power quality and stability analysis techniques in frequency domain
- Relevant standards regarding modeling, analysis, and measurements
- Real-life examples and practical case studies related to power quality and instability challenges
- Various mitigation measures to maintain electromagnetic compatibility and power system stability
- Recommendations regarding unified analysis workflow for harmonic propagation studies and stability analysis software layers in power electronic equipment, and sequence and frequency coupling
Modelling of Power System Components and Power Converters for Frequency Domain Analysis provides a reference document for practicing engineers, researchers, and students to bridge the gap between academic research and industrial practices. It delivers an educational platform for understanding the complexities of modern converter-based power systems, including both modeling and analysis techniques.