Recursive Filtering of Networked Systems with Communication Protocol Scheduling Recursive Filtering of Networked Systems with Communication Protocol Scheduling

Recursive Filtering of Networked Systems with Communication Protocol Scheduling

Shuai Liu and Others
    • 209,99 €
    • 209,99 €

Publisher Description

Recursive Filtering of Networked Systems with Communication Protocol Scheduling explores protocol-based state estimation for complex networked systems including Kalman filtering for nonlinear systems under Round-Robin (RR) and MEF-TOD protocols, finite-horizon robust state estimation under FlexRay protocol, robust filtering for multi-rate systems under RR and stochastic communication protocols, and state estimation under event-triggering protocol and redundant channel for neural networks. This book provides theoretical frameworks using techniques like backward Riccati equations, Kalman filtering theory, Unscented transform, and ellipsoid estimation theory.

Features
Focuses on the intersection of recursive filtering techniques and communication protocol scheduling Introduces communication protocols to allocate limited network resources Enhances the reliability and accuracy of information transmission and minimize the occurrence of information conflicts and congestion in the network Offers practical strategies for real-world challenges in networked systems Explains designing filtering unit for a class of complex networks
This book is aimed at graduate students and researchers in electrical engineering, power systems, control systems.

GENRE
Professional & Technical
RELEASED
2026
8 September
LANGUAGE
EN
English
LENGTH
208
Pages
PUBLISHER
CRC Press
SIZE
13.1
MB
Advanced Hybrid Information Processing Advanced Hybrid Information Processing
2022
Advanced Hybrid Information Processing Advanced Hybrid Information Processing
2022
e-Learning, e-Education, and Online Training e-Learning, e-Education, and Online Training
2021
e-Learning, e-Education, and Online Training e-Learning, e-Education, and Online Training
2021
Advanced Hybrid Information Processing Advanced Hybrid Information Processing
2021
Advanced Hybrid Information Processing Advanced Hybrid Information Processing
2021