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We've designed the system with large scale in mind".
The paper presents a new methodology for active power balance control in future interconnected power system with large scale wind power penetration.
Real-time control of the regulating power is necessary for reliable and secure operation of future power system with large scale wind power integration.
Compared with the conventional S-procedure method, the proposed approach achieves similar performance, but reduces the complexity significantly, especially for the system with large scale number of antennas.
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The net reduction eases the design of controller and holds remarkable advantages especially for systems with large scale.
Stiff fiber-bundle models can then be viewed as systems with large scale heterogeneities along the interface (i.e., large a and small L) for which the damage zone is notably extended.
A novel optimal scheduling method considering demand response is proposed for power systems incorporating with large scale wind power.
The density reduction rate and the equation system with large-scale forcing are given below.
A methodology for controlling the active power imbalance in a power system with large-scale wind power is presented.
Therefore, there is a necessity that the tritium recovery system with large-scale and higher integrity is developed and constructed.
The fluctuating and uncertain nature of wind may introduce several challenges in the maintenance of the power balance in a power system with large-scale wind power integration.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com