Energies, Vol. 19, Pages 540: Marginal Capacity Credit Analysis for Utility-Scale Solar and Wind Power: A Case Study in the Republic of Korea
Energies, Vol. 19, Pages 540: Marginal Capacity Credit Analysis for Utility-Scale Solar and Wind Power: A Case Study in the Republic of Korea
Energies doi: 10.3390/en19020540
Authors:
Chunhyun Paik
Yongjoo Chung
Young Jin Kim
This study presents a comprehensive analysis of the marginal capacity credit of utility-scale solar and wind power in South Korea using an effective load-carrying capability-based methodology. This research makes three key contributions distinguishing it from previous works. First, the study introduces the concept of marginal capacity credit to quantify the contributions of newly added renewable energy capacities in power systems that already host significant solar and wind power capacities. Second, it evaluates the interaction effects between solar and wind power, revealing their complementary potential in enhancing system adequacy across different penetration levels. Third, it investigates how integrating energy storage systems mitigates intermittency and aligns renewable generation with peak demand. Results indicate that solar power provides relatively high marginal capacity credit at low penetration levels due to its alignment with peak demand, but its contribution declines as deployment expands and peak hours shift. Conversely, wind power maintains more stable marginal capacity credit and eventually surpasses solar power at higher penetration levels due to its broader generation profile. Storage integration notably enhances marginal capacity credit for both resources, with solar power gaining greater benefit from optimized charging and discharging strategies. These findings provide practical guidance for improving power system reliability and capacity planning under growing renewable penetration.
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