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Relatively generation system reliability models are applied to reserve allocation problems through building the capacity outage probability table (COPT) [5, 6, 19].
For the reserve allocation process, an approach is used to reduce the need of fast-response reserves.
This study describes the numerical response of ground-dwelling beetles to increasing distance from streams, with the aim of evaluating the effectiveness of such a bias in reserve allocation.
Our reserve allocation model is meaningful not only for obtaining an economic solution of reserve allocation, but also for keeping system reliability above a certain level.
However, redundant local reserve will reduce the economy of the global reserve allocation.
Afterwards, this paper would present and analyze the global reserve allocation model among areas.
When the transmission constraint becomes tighter, the reserve allocation would be adjusted.
The realization of reserve allocation includes two key factors: wind uncertainty and network transmission constraints.
The presented model is to find the rational reserve allocation between the two areas under the acceptable reliability level.
In this paper, we proposed a two-level iterative model that includes economic reserve allocation and composite reliability evaluation.
It can be applied in applications such as spinning reserve allocation, load frequency control, etc [17, 18].
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