Dynamic Event-Triggered Fault Diagnosis, State Estimation, and Predictive Control for Networked Systems

Dynamic Event-Triggered Fault Diagnosis, State Estimation, and Predictive Control for Networked Systems

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Dynamic Event-Triggered Fault Diagnosis, State Estimation, and Predictive Control for Networked Systems

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Dynamic Event-Triggered Fault Diagnosis, State Estimation, and Predictive Control for Networked Systems

Overall Rating: 2.4 / 5 (average from multiple review sources, as of 24 Apr 2026)
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This title will be released on May 12, 2026. Pre-order now. Express Delivery available with Amazon Prime.
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Dynamic Event-Triggered Fault Diagnosis, State Estimation, and Predictive Control for Networked Systems

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The four novel Dynamic Event-Triggered Mechanisms (DETMs) in this book are for complex networked systems that optimize resource utilization while preserving system performance.These include hybrid dynamic variables-dependent ETMs, hybrid adjusting variables-dependent ETMs, bounded dynamic variable/time-varying threshold-dependent ETMs, and terminal constraint set-dependent mixed time/event-triggered mechanisms.It explores applications across fault diagnosis in networked systems, finite-time state estimation for complex dynamical networks, and MPC implementation. Presents a systematic study on dynamic event-triggered mechanismsReviews comprehensive research results on dynamic event-triggered fault diagnosis, state estimation, and MPCExplores how these theories can be applied to the practical engineering problem of load frequency control in power systemsDiscusses complex factors including cyber-attacks, multiple timescales, jumping system parameters, hard constraints, polytopic uncertain
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