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Power System Flexibility provides a consolidated foundation in the design, planning and operation of power systems increasingly based on intermittent highly renewable power systems, integrating core theory, mathematical analysis, and modern international applications, in an unusually multidisciplinary space. Opening with an expansive theoretical grounding in the definition, analysis, and modelling of power system, the work demonstrates how to apply flexibility theory to critical problems involving intermittency and variability in power system planning and operation. The work concludes with an international complement of real-world case studies, demonstrating how flexibility theory have been applied to real-world projects of increasing complexity. examples and how they might be systematized into future systems with high penetration of renewable energy. Integrates underlying scientific foundations with modern methods in the planning and operation of flexible power systems Demonstrates how to design, plan, operationalize, and optimize flexible solutions across the full range of power generation, electrical grids, energy demand, and energy storage applications Accompanied by an international complement of real-world case studies focusing on delivering flexibility in highly renewable electricity systems
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