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Название: Design and Development of Model Predictive Primary Control of Micro Grids: Simulation Examples in MATLAB
Автор: Puvvula Vidyasagar, K. Shanti Swarup
Издательство: Springer
Серия: Springer Tracts in Electrical and Electronics Engineering
Год: 2023
Страниц: 170
Язык: английский
Формат: pdf (true), epub
Размер: 20.9 MB
This book provides a design and development perspective MPC for micro-grid control, emphasizing step-by-step conversion of a nonlinear MPC to linear MPC preserving critical aspects of nonlinear MPC. The book discusses centralized and decentralized MPC control algorithms for a generic modern-day micro-grid consisting of vital essential constituents. It starts with the nonlinear MPC formulation for micro-grids. It also moves towards the linear time-invariant and linear time-variant approximations of the MPC for micro-grid control. The contents also discuss how the application of orthonormal special functions can improve computational complexity of MPC algorithms. It also highlights various auxiliary requirements like state estimator, disturbance compensator for robustness, selective harmonic eliminator for eliminating harmonics in the micro-grid, etc. These additional requirements are crucial for the successful online implementation of the MPC. The examples in the book are available both from a calculation point of view and as MATLAB codes.
Автор: Puvvula Vidyasagar, K. Shanti Swarup
Издательство: Springer
Серия: Springer Tracts in Electrical and Electronics Engineering
Год: 2023
Страниц: 170
Язык: английский
Формат: pdf (true), epub
Размер: 20.9 MB
This book provides a design and development perspective MPC for micro-grid control, emphasizing step-by-step conversion of a nonlinear MPC to linear MPC preserving critical aspects of nonlinear MPC. The book discusses centralized and decentralized MPC control algorithms for a generic modern-day micro-grid consisting of vital essential constituents. It starts with the nonlinear MPC formulation for micro-grids. It also moves towards the linear time-invariant and linear time-variant approximations of the MPC for micro-grid control. The contents also discuss how the application of orthonormal special functions can improve computational complexity of MPC algorithms. It also highlights various auxiliary requirements like state estimator, disturbance compensator for robustness, selective harmonic eliminator for eliminating harmonics in the micro-grid, etc. These additional requirements are crucial for the successful online implementation of the MPC. The examples in the book are available both from a calculation point of view and as MATLAB codes.