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Development of one day-ahead renewable energy generation assessment system in South Koreaopen access

Authors
Lee, Y.-C.Lim, J.-T.Oh, U.-J.Do, D.-P.N.Choi, J.-S.Kim, J.-S.
Issue Date
2015
Publisher
Korean Institute of Electrical Engineers
Keywords
Equivalent generation function(EGF); Renewable energy generation assessment; Solar cell generator; Solar radiation ambiguity; Wind and solar farms; Wind speed uncertainty; Wind Turbine Generator
Citation
Transactions of the Korean Institute of Electrical Engineers, v.64, no.4, pp 505 - 514
Pages
10
Indexed
SCOPUS
KCI
Journal Title
Transactions of the Korean Institute of Electrical Engineers
Volume
64
Number
4
Start Page
505
End Page
514
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/18442
DOI
10.5370/KIEE.2015.64.4.505
ISSN
1975-8359
2287-4364
Abstract
This paper proposes a probabilistic generation assessment model of renewable energy generators(REGs) considering uncertainty of resources, mainly focused on Wind Turbine Generato(WTG) and Solar Cell Generator(SCG) which are dispersed widely in South Korea The proposed numerical analysis method assesses the one day-ahead generation by combining equivalent generation characteristics function and probabilistic distribution function of wind speed(WS) and solar radiation(SR) resources. The equivalent generation functions(EGFs) of the wind and solar farms are established by grouping a lot of the farms appropriately centered on Weather Measurement Station(WMS). First, the EGFs are assessed by using regression analysis method based on typical least square method from the recorded actual generation data and historical resources(WS and SR). Second, the generation of the REGs is assessed by adding the one day-ahead resources forecast, announced by WMS, to the EGFs which are formulated as third order degree polynomials using the regression analysis. Third, a Renewable Energy Generation Assessment System(REGAS) including D/B of recorded actual generation data and historical resources is developed using the model and algorithm predicting one day-ahead power output of renewable energy generators. Copyright ? The Korean Institute of Electrical Engineers.
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