Grid-Forming Power Inverters: Control and Applications is the first book dedicated to addressing the operation principles, grid codes, modelling and control of grid-forming power inverters. The book initially discusses the need for this technology due to the substantial annual integration of inverter-based renewable energy resources. The key differences between the traditional grid-following and the emerging grid-forming inverters technologies are explained. Then, the book explores in detail various topics related to grid-forming power inverters, including requirements and grid standards, modelling, control, damping power system oscillations, dynamic stability under large fault events, virtual oscillator-controlled grid-forming inverters, grid-forming inverters interfacing battery energy storage, and islanded operation of grid-forming inverters.
Features:
Explains the key differences between grid-following and grid-forming inverters Explores the requirements and grid standards for grid-forming inverters Provides detailed modelling of virtual synchronous generators Explains various control strategies for grid-forming inverters Investigates damping of power system oscillations using grid-forming converters Elaborates on the dynamic stability of grid-forming inverters under large fault events Focuses on practical applications
Edited by:
Nabil Mohammed, Hassan Haes Alhelou (Monash University, Australia.), Behrooz Bahrani Imprint: CRC Press Country of Publication: United Kingdom Dimensions:
Height: 234mm,
Width: 156mm,
Weight: 730g ISBN:9781032298887 ISBN 10: 103229888X Pages: 290 Publication Date:28 February 2023 Audience:
Professional and scholarly
,
Undergraduate
Format:Hardback Publisher's Status: Active
1 Introduction to Grid-Forming Inverters. 2 Requirements and Grid Standards for Grid-Forming Inverters. 3 Power System Requirements for Grid-Forming Converters. 4 Towards Performance-Based Requirements and Generic Models for Grid-Forming Inverters. 5 An Overview of Modelling and Control of Grid-Forming Inverters. 6 Small-Signal Modeling and Validation including State-Space and Admittance Models of the Virtual Synchronous Machine. 7 Grid-Forming Control of Doubly Fed Induction Generators. 8 Damping Power System Oscillations Using Grid-Forming Converters. 9 Grid-Forming Dynamic Stability under Large Fault Events – Application to 100% Inverter-Based Irish Power System. 10 Virtual Oscillator-Controlled Grid-Forming Inverters Incorporating Online Parametric Grid Impedance Identification. 11 Grid-Forming Inverters Interfacing Battery Energy Storage Systems. 12 Operation of Grid-Forming Inverters in Islanded Mode.