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The identified models are then applied to modeling of dislocation dissociation, stacking fault formation, glide and dislocation reactions in these materials.
PID controllers are designed based on the identified models.
The identified models are compared with some physics based models.
This analysis shows that the identified models (over time) capture clinically relevant and observed diagnostic trends.
The identified models, and thus the experiment designs, are evaluated by cross-validations.
The identified models are analyzed and compared in the time and frequency domains.
Based on the identified models, three fractional order controllers are proposed for the whole system.
The controller is updated based on these two identified models of the system's parts.
In this paper, the problem of estimating uncertainty regions for identified models is considered.
The identified models will then suitable for iterative identification-control design.
We validate the identified models from frequency domain [12] with the step response of this model in time domain.
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