where CPV is the desired PV array installation capacity, Eload is the
daily load energy consumption, Tps is the number of peak solar
hours per day and e is the overall loss factor and allowance for PV
array, such as higher module temperatures, module soiling, possible
array shading and production tolerances. This comprehensive loss
factor was estimated as 20% [53] in this study.
Therefore the total capacity is calculated as 131.6 kWp, which is
equal to 658 PV panels if all are the same modules as in Stage 1
(200 Wp for each module).
where CPV is the desired PV array installation capacity, Eload is thedaily load energy consumption, Tps is the number of peak solarhours per day and e is the overall loss factor and allowance for PVarray, such as higher module temperatures, module soiling, possiblearray shading and production tolerances. This comprehensive lossfactor was estimated as 20% [53] in this study.Therefore the total capacity is calculated as 131.6 kWp, which isequal to 658 PV panels if all are the same modules as in Stage 1(200 Wp for each module).
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