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The efficacy of the controller framework is tested on the benchmark 2 DoF helicopter testbed.
The efficacy of the controller performance is demonstrated in system changing condition supplemented by experimental validation.
The efficacy of the controller is shown through simulated and animation results.
The characteristic of the developed system is treated analytically and the efficacy of the controller performances is verified experimentally.
Stability of the resulting closed-loop system is established and the efficacy of the controller is demonstrated through simulations by considering various practical circumstances.
The first phase evaluated the basic efficacy of the controller and its ability to manage fluids during hemorrhage scenarios.
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The results further establish the efficacy of the controllers.
First, the simulator was designed with as accurate a hemodynamic model as possible, given the current understanding of the dynamic predictors of fluid responsiveness, but generalizations about the possible efficacy of this controller in clinical practice would be premature based on this initial work.
Using both simulation and experimental results, we demonstrate under what operating conditions friction dynamics are vital to the control problem and, for these conditions, demonstrate the efficacy of the proposed controller.
The controller's performance in a SMIB system is also examined using simulation studies and the results validate the efficacy of the proposed controller.
Simulation results confirm the efficacy of the proposed controller.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com