Springer, 2023. — 292 p. — (Power Systems). — ISBN 978-981-99-1039-7.
This book presents the latest research on switching control, adaptive switching control, and their applications in the transient stability control and analysis of large-scale complex power systems. In large-scale complex power systems, renewable power generators, flexible power electronics converters, and distributed controllers are widely employed. Due to the poor overcurrent tolerance capability of power electronics converters and lacking of coordination mechanism, stability control in events, such as natural disasters, cascaded faults, and severe disturbances, is viewed as the key challenge in the operation of these systems. High-performance self-coordinated controllers are needed for the control of important power sources and power electronics converters. Adaptive switching controllers are a group of controllers designed by the authors for the control of various renewable power generators, synchronous generators, and modular multilevel converters. These controllers operate in a self-coordinated manner and aim to employ the largest transient control energy of converters and power sources. Imbalance between power generation and consumption is largely filled by the application of these controllers, and transient stability of power systems can be significantly improved. This book covers both the preliminary knowledge and key proofs in the design and stability analysis of adaptive switching control systems, and considerable simulation and experimental results are presented to illustrate the application and performance of the controllers. This book is used as a reference book for researchers and engineers in fields of electrical engineering and control engineering.
Switching Control Based on Bang-Bang Funnel Controller and Stability Analysis MethodsSwitching Control of Impulsively Disturbed Nonlinear Systems Based on Bang-Bang Constant Funnel Controller
Observer-Based Robust Bang-Bang Funnel Controller and Its Stability in Closed-Loop Systems
Transient Stability Control of Large-Scale Complex Power Systems Based On Adaptive Switching ControllersSwitching Control of Synchronous Generators for Transient Stability Enhancement
Switching Control of Modular Multi-level Converters in High-Voltage-Direct-Current Transmission Systems Via BBFC-Based SCU
Switching Control of Doubly-Fed Induction Generator-Based Wind Turbines for Transient Stability Enhancement of Wind Power Penetrated Power Systems
Adaptive Switching Control of Power Electronic Converters