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The dynamic behaviors of wind turbine gearboxes are concerned by engineers since they affect the whole working performances and the service lives of wind turbines.
In addition, the dynamic behaviors of wind turbines (WTs) and its effects of transmission lines need to be considered.
This is not a general conclusion but specific to the studied system since it depends on the composition of random behaviors of wind and tidal speeds.
However, due to the stochastic behaviors of wind resources cannot be fully predicted, the induced uncertainties significantly influence the power system operations, such as reserve deployment, unit commitment, power dispatch, power system's security and reliability assessments, etc [1, 2, 3, 4, 5, 6].
With the development of wind energy, it is necessary to develop equivalent models to represent dynamic behaviors of wind farms in power systems.
With the increasing installed capacities for both individual wind turbines and wind farms, it is necessary to develop suitable models to represent dynamic behaviors of wind farms in power systems.
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The irregular behavior of wind makes the system unstable.
The design improves the starting behavior of wind turbines.
It is well known that the main drawback of wind power is the inherent variable behavior of wind speed.
However, the stochastic behavior of wind speed leads to significant disharmony between wind energy production and electricity demand.
With the advances in computational tools, a more realistic representation of the behavior of wind turbines should be performed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com