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The power dispatcher splits system power supply into several voltages for each component specification.
In each model, the sending end VSCs are modeled to operate as power dispatcher while the receiving end VSC is modeled to operate as dc voltage regulator and reactive power controller [2].
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IL and SL are usually applicable to industrial and commercial users and are generally not directly interrupted by the power dispatchers, but performed by users after being notified.
Therefore, it is quite necessary for power system dispatchers to take both profit and risk into consideration.
Demand response (DR) programs can be employed to alleviate system congestions by motivating the interactions between power system dispatchers and power consumers [20, 21].
It may not be advisable for power system dispatchers to choose this solution for the consideration of economic aspects.
Another function of this module is to save information at each point, like states of power system, dispatchers' action and branch probability.
Suppose, λ varies from 0.0 to 0.5, and this range is considered wide enough to reflect the variety of risk that power system dispatchers are willing to assume.
It is clear that if solution C is adopted by power system dispatchers, the expected transmission loss among the 400 wind samples is 1.4431 MW/h, much lower than that of B and C.
Another function of control center model is to provide interaction between power system and dispatcher.
Once fully developed, DTESS can be used to simulate dispatchers' response when encountering an initial event, and improve power system dispatching reliability.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com