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7/17/2019 Cpri Paper-1 Conclusion http://slidepdf.com/reader/full/cpri-paper-1-conclusion 1/1 Conclusions: 1) Generation of Hourly Wind speed, Solar irradiation, Water availability and Load data from monthly data using Data Synthesizer software !) "al#ulation of $ower outputs of all renewable energy resour#es %) &ar'ov models of Wind, Solar, $i#o(Hydro and Load are developed whi#h results in probability, freuen#y and duration of all the states *) "omputation of Loss of Load $robability +LL$), -uel #ost and "! emission of Diesel generator from #ombined generation and load model .) -ormulation of the ob/e#tive fun#tion in#luding #osts of all DGs and number of DG units in#luding the reliability #onstraint 0) ntegration of 2ggregate &ar'ov model with G2 and $S te#hniues to find the optimum number of DG units with optimum #ost 7) "omparison of the results of between &ar'ov G2 and $S te#hniues is  presented

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Page 1: Cpri Paper-1 Conclusion

7/17/2019 Cpri Paper-1 Conclusion

http://slidepdf.com/reader/full/cpri-paper-1-conclusion 1/1

Conclusions:

1) Generation of Hourly Wind speed, Solar irradiation, Water availability and

Load data from monthly data using Data Synthesizer software

!) "al#ulation of $ower outputs of all renewable energy resour#es

%) &ar'ov models of Wind, Solar, $i#o(Hydro and Load are developed whi#h

results in probability, freuen#y and duration of all the states

*) "omputation of Loss of Load $robability +LL$), -uel #ost and "!

emission of Diesel generator from #ombined generation and load model

.) -ormulation of the ob/e#tive fun#tion in#luding #osts of all DGs and number 

of DG units in#luding the reliability #onstraint

0) ntegration of 2ggregate &ar'ov model with G2 and $S te#hniues to find

the optimum number of DG units with optimum #ost

7)

"omparison of the results of between &ar'ov G2 and $S te#hniues is presented