Power-system frequency control has to contend with more than changing electricity demand. Communication networks can be disrupted or manipulated, renewable generation varies, and electric vehicles and battery storage add new dynamics. Cyber-Secure Load Frequency Control for Power Systems brings these challenges together through technical studies of control strategies designed for power systems operating under cyberattacks and other faults.
Across its chapters, the book moves from system models and control design to stability analysis and numerical examples. The emphasis is on methods and their analytical foundations—not a general introduction to cybersecurity—so readers can follow how specific attack models and operating conditions shape controller design.
Control strategies under attack
The chapters investigate load frequency control in settings affected by deception attacks, periodic denial-of-service attacks, sensor faults, and communication constraints. Topics include observer-based and sliding-mode control, event-triggered strategies, and approaches intended to maintain stability when a system’s information or components cannot be assumed fully reliable.
Power systems in transition
Electric vehicles, battery energy storage, and wind power feature in the book’s treatment of changing grid conditions. Multi-area power systems also receive attention, connecting local control decisions to the behavior of interconnected areas. Together, these applications give readers a focused view of how frequency-control problems shift as power-system components and vulnerabilities change.
Analysis backed by examples
Rather than presenting control techniques as isolated recipes, the material develops problem formulations, controller designs, stability or reachability analyses, and numerical examples. It also includes H∞ control and fault-tolerant approaches. This structure is useful for readers who want to examine the reasoning behind a method as well as the system scenario it addresses.
For advanced study and engineering research
The book is aimed at graduate-level students, researchers, and engineers working in electrical engineering, control engineering, power systems, or related algorithm research. It assumes familiarity with calculus, linear algebra, and control theory, making it best suited to technically prepared readers seeking focused work on secure and resilient load frequency control.
For readers studying the intersection of grid control and cyber resilience, this volume offers a concentrated collection of models, analyses, and applications to explore.
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