Exact(4)
Simulation results confirm that the suggested methodologies yield high control precision in control.
Many different techniques have been proposed in medical practice but all the suggested methodologies have specific limitations.
The current paper provides a sufficient proof of concept of the suggested methodologies, nevertheless results need to be checked against a bigger sample size in further research.
Sensitivity studies are performed to evaluate the two MDNBR enhancement methodologies and show that the suggested methodologies could enhance the MDNBR during the CR banks withdrawal event of the SMART.
Similar(56)
Simulation results is used to substantiate the suggested methodology.
The suggested methodology takes the form of a Geographic Information System-based macro-scan.
Numerical examples are presented, showing the efficiency and robustness of the suggested methodology.
The suggested methodology is equally valuable for analyzing commercial, educational and non-profitmaking organizations.
A verification procedure for the suggested methodology is firstly carried out.
The suggested methodology results in an expandable design with reduced-area.
The suggested methodology is programmed in Pascal and tested on a 4-DOF nonlinear lumped parameter biomechanical model.
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