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Two SOFC controllers are designed for tuning the laser power and the traverse velocity simultaneously to tackle the geometrical and absorptivity variations of the work piece.
The GA designed for tuning process presents a real-coding issue.
In practice, however, existing controllers are mostly designed for tuning low-level performance indicators instead of high-level requirements.
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Although these counters are originally designed for performance tuning, they have also been used for evaluating power consumption.
The GA designed for both tuning process presents a real-coding issue and uses the stochastic universal sampling as selection procedure together with an elitist scheme.
Based on the D-partition method and FOPDT (First Order plus Dead Time) process approximation, a software tool is designed that allows for tuning subject to phase and gain margins.
This concept provides simple analytic design relations for tuning PI controllers.
A systematic data-based design method for tuning proportional integral derivative (PID) controllers for disturbance attenuation is proposed.
This paper presents the application of quantitative feedback design techniques for tuning stabilizers in multi-machine power systems.
The convergence conditions together with the performance measure jointly constitute a design tool for tuning the parameters of the variable-gain controller.
The revision of the conventional Magnitude Optimum design criterion for tuning the PID type controller's parameters reveals three fundamental drawbacks.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com