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An optimum, minimum control effort strategy is proposed.
The design objective is to improve the stability of the power system with minimum control effort.
The design objective is to get maximum damping (performance) with minimum control effort (cost).
In vibration control, certain sensor/actuator locations are preferable for reducing structural vibration while using minimum control effort.
The design objective is to improve the damping of power system when subjected to a disturbance with minimum control effort.
For suppressing chaos with minimum control effort, the system is stabilized on its first order unstable fixed point (UFP).
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An optimal balance between the libration stability and a fast deorbit of satellite with minimum control efforts is achieved.
Finally, the proposed design approach is extended to a multi-machine power system to damp the modal oscillations with minimum control efforts.
Conventional optimal design technique has some difficulties in designing well-balanced control system between multiple objectives of performance and cost so as to exhibit the best performance on reducing incompatible responses of the coupled system with minimum control efforts.
The advantages of the proposed design are a minimum energy control effort, faster response and zero steady-state error.
The synchronizing methods are then compared from various point of views including synchronizing error variance, convergence time, control effort, maximum and minimum values of the control signal.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com