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Transient Characteristics, Modelling and Stability Analysis of Microgrid
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Transient Characteristics, Modelling and Stability Analysis of Microgrid/ by Zhikang Shuai.
Author:
Shuai, Zhikang.
Description:
XVIII, 290 p. 217 illus., 126 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Power electronics. -
Online resource:
https://doi.org/10.1007/978-981-15-8403-9
ISBN:
9789811584039
Transient Characteristics, Modelling and Stability Analysis of Microgrid
Shuai, Zhikang.
Transient Characteristics, Modelling and Stability Analysis of Microgrid
[electronic resource] /by Zhikang Shuai. - 1st ed. 2021. - XVIII, 290 p. 217 illus., 126 illus. in color.online resource.
Introduction -- Transient Fault Characteristics of Current-controlled IIDGs -- Transient Fault Characteristics of Voltage-controlled IIDGs -- Fault Ride Though Strategies of Current-Controlled IIDG -- Fault Ride Though Control Methods of Voltage-Controlled IIDGs -- -- Full-order Modeling and Dynamic Stability Analysis of Microgrid -- Time-scale Model Reduction of Microgrid based on Singular Perturbation Method -- Spatial Model Reduction for Multi-Microgrid Based on Dynamic Equivalent method -- Modeling and Stability Analysis of Asymmetric Microgrid Based on Dynamic Phasor Theory -- Transient Angle Stability of Virtual Synchronous Generators Connected to Power Grid -- Transient Angle Stability of Paralleled Synchronous and Virtual Synchronous Generators System -- Re-synchronization Analysis of Virtual Synchronous Generators in Power Electronic System.
The book focuses on the transient modelling, stability analysis and control of power electronic systems, since these systems face severe safe operation problems the during transient period. It discusses both theoretical analysis and practical applications, highlighting the transient characteristics of converters with different control strategies, and proposes transient modelling and model reduction methods. Furthermore, it classifies the transient stability problems of the system to help the readers gain an understanding of the basic theoretical methods for analysing the power electronic system, at the same time providing sufficient detail to enable engineers to design such systems. Comprehensively describing theoretical analyses, ranging from system modelling and stability analysis to transient control, the book is a valuable resource for researchers, engineers and graduate students in fields of transient modelling, stability analysis and control of power electronic systems.
ISBN: 9789811584039
Standard No.: 10.1007/978-981-15-8403-9doiSubjects--Topical Terms:
561011
Power electronics.
LC Class. No.: TK7881.15
Dewey Class. No.: 621.317
Transient Characteristics, Modelling and Stability Analysis of Microgrid
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Introduction -- Transient Fault Characteristics of Current-controlled IIDGs -- Transient Fault Characteristics of Voltage-controlled IIDGs -- Fault Ride Though Strategies of Current-Controlled IIDG -- Fault Ride Though Control Methods of Voltage-Controlled IIDGs -- -- Full-order Modeling and Dynamic Stability Analysis of Microgrid -- Time-scale Model Reduction of Microgrid based on Singular Perturbation Method -- Spatial Model Reduction for Multi-Microgrid Based on Dynamic Equivalent method -- Modeling and Stability Analysis of Asymmetric Microgrid Based on Dynamic Phasor Theory -- Transient Angle Stability of Virtual Synchronous Generators Connected to Power Grid -- Transient Angle Stability of Paralleled Synchronous and Virtual Synchronous Generators System -- Re-synchronization Analysis of Virtual Synchronous Generators in Power Electronic System.
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The book focuses on the transient modelling, stability analysis and control of power electronic systems, since these systems face severe safe operation problems the during transient period. It discusses both theoretical analysis and practical applications, highlighting the transient characteristics of converters with different control strategies, and proposes transient modelling and model reduction methods. Furthermore, it classifies the transient stability problems of the system to help the readers gain an understanding of the basic theoretical methods for analysing the power electronic system, at the same time providing sufficient detail to enable engineers to design such systems. Comprehensively describing theoretical analyses, ranging from system modelling and stability analysis to transient control, the book is a valuable resource for researchers, engineers and graduate students in fields of transient modelling, stability analysis and control of power electronic systems.
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