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Optimal and Robust State Estimation: Finite Impulse Response (FIR) and Kalman Approaches

Yuriy S. Shmaliy, Shunyi Zhao
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A unified and systematic theoretical framework for solving problems related to finite impulse response (FIR) estimate
Optimal and Robust State Estimation: Finite Impulse Response (FIR) and Kalman Approaches is a comprehensive investigation into batch state estimators and recursive forms. The work begins by introducing the reader to the state estimation approach and provides a brief historical overview. Next, the work discusses the specific properties of finite impulse response (FIR) state estimators. Further chapters give the basics of probability and stochastic processes, discuss the available linear and nonlinear state estimators, deal with optimal FIR filtering, and consider a limited memory batch and recursive algorithms.
Other topics covered include solving the q-lag FIR smoothing problem, introducing the receding horizon (RH) FIR state estimation approach, and developing the theory of FIR state estimation under disturbances. The book closes by discussing the theory of FIR state estimation for uncertain systems and providing several applications where the FIR state estimators are used effectively.
Año:
2022
Editorial:
Wiley-IEEE Press
Idioma:
english
Páginas:
483
ISBN 10:
1119863074
ISBN 13:
9781119863076
Archivo:
PDF, 9.26 MB
IPFS:
CID , CID Blake2b
english, 2022
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