Research on optimal operation for long-term complementary power generation of wind-photovoltaic-hybrid storage system
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(School of Water Resources and Hydropower Engineering, North China Electric Power University, Beijing 102206, China)

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TV743

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    Abstract:

    To investigate the long-term complementary regulation capability of hybrid pumped-storage power stations under the background of grid integration of large-scale wind and photovoltaic power, an optimal operation model for long-term complementary power generation of wind-photovoltaic-hybrid storage systems was developed. This model aims to maximize the utilization of wind and photovoltaic power generation in the joint operation of wind-photovoltaic-hybrid storage systems by minimizing the variance of residual load, and it was solved using a progressive optimization algorithm. The results of a case study show that compared with the wind-photovoltaic-hydro system without reversible pump-turbine units, the expected value of the utilization rate of wind and photovoltaic power in the wind-photovoltaic-hybrid storage system increases by 8.56%, and the expected value of the variance of residual load decreases by 99.38%. These results indicate that the hybrid pumped-storage power station can better play its role in regulating wind and photovoltaic power, and can improve the utilization rate of wind and photovoltaic power generation and the power generation capacity of the wind-photovoltaic-hybrid storage system while meeting the demand for tracking grid load.

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张验科,罗笙月,卢垚键,等.风光混蓄长周期互补发电优化调度研究[J].水利水电科技进展,2025,45(4):60-66.(ZHANG Yanke, LUO Shengyue, LU Yaojian, et al. Research on optimal operation for long-term complementary power generation of wind-photovoltaic-hybrid storage system[J]. Advances in Science and Technology of Water Resources,2025,45(4):60-66.(in Chinese))

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History
  • Received:July 29,2024
  • Revised:
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  • Online: July 30,2025
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