State estimation-based robust optimal control of influenza epidemics in an interactive human society
From MaRDI portal
Publication:6118633
DOI10.1016/j.ins.2022.01.049arXiv2005.13101OpenAlexW4226330659WikidataQ113295106 ScholiaQ113295106MaRDI QIDQ6118633
No author found.
Publication date: 28 February 2024
Published in: Information Sciences (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2005.13101
Cites Work
- Unnamed Item
- Unnamed Item
- Uncertainty and sensitivity analysis of the basic reproduction number of a vaccinated epidemic model of influenza
- Nonlinear weighted measurement fusion unscented Kalman filter with asymptotic optimality
- Optimal control strategy for prevention of avian influenza pandemic
- Optimal control for pandemic influenza: the role of limited antiviral treatment and isolation
- A model for influenza with vaccination and antiviral treatment
- Constrained optimal control applied to vaccination for influenza
- Optimal control of an influenza model with seasonal forcing and age-dependent transmission rates
- Particle filtering for a class of cyber-physical systems under round-robin protocol subject to randomly occurring deception attacks
- Nonlinear control of infection spread based on a deterministic SEIR model
- A delayed avian influenza model with avian slaughter: stability analysis and optimal control
- Observer-based adaptive PI sliding mode control of developed uncertain SEIAR influenza epidemic model considering dynamic population
- Optimal Control Strategies for Virus Spreading in Inhomogeneous Epidemic Dynamics
- Rapidly Exponentially Stabilizing Control Lyapunov Functions and Hybrid Zero Dynamics
- Correntropy: Properties and Applications in Non-Gaussian Signal Processing
- Inverse Optimality in Robust Stabilization
- Stability analysis and optimal control of avian influenza model on complex networks
- On Unscented Kalman Filtering for State Estimation of Continuous-Time Nonlinear Systems
- Analytical Solution for an In-host Viral Infection Model with Time-inhomogeneous Rates
- Dynamics and control of COVID-19 pandemic with nonlinear incidence rates
This page was built for publication: State estimation-based robust optimal control of influenza epidemics in an interactive human society