4.2.1. Energy storage power correction During peaking, ES will continuously absorb or release a large amount of electric energy. The impact of the ESED on the determination of ES capacity is more obvious. Based on this feature, we established the ES peaking power correction model with the objective of minimizing the ESED and OCGR.
Taking the 49.5% RE penetration system as an example, the power and capacity of the ES peaking demand at a 90% confidence level are 1358 MW and 4122 MWh, respectively, while the power and capacity of the ES frequency regulation demand are 478 MW and 47 MWh, respectively.
As can be seen in Table 8, both the demands of power and capacity of ES are increasing as penetration of RE rises.
The correction of the ES operating power increases operating costs. However, the OCGR indicator limits the increase in operating costs to an appropriate range (no more than a 1% increase in operating costs for six typical days). A method for determining the ES capacity demand for high-penetration RE systems is presented in this study.
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