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The problem of adaptive fault-tolerant control for linear systems with time-varying actuator faults including outage and loss of effectiveness is investigated in this paper.
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The cases that one of elevators is lock-in-place and another elevator or the engine is partial loss of effectiveness are addressed.
The degree of effectiveness is very high.
Numerical simulations indicate that the improvement of the rate of loss of vaccine effectiveness is more effective than the improvement of the vaccination rate for controlling Dengue.
A new approach to manage the actuators redundancy in the presence of loss of control effectiveness is proposed in this paper.
The partial loss of actuator effectiveness is considered for the control of a class of nonlinear processes in the presence of a fault.
The problem of process systems subject to actuator faults (partial loss of actuator effectiveness) is considered.
We assume that the prevalence rate of the vaccination program is p = 50%, the loss of protection effectiveness is σ = 80%; the other parameters are the same as those used in the descriptions above.
The problem of attitude tracking control for a miniature rotorcraft with partial loss of actuator effectiveness is investigated in this paper.
The partial loss of actuator effectiveness is approximated by high order neural networks.
If the loss of protection effectiveness is small, then the variation is very large.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com