Data-Driven Modeling and Optimal Control of Hydrogen Energy Storage for Frequency Regulation

  • Lee, Gi-Ho; 
  • Park, Jae-Young; 
  • Ban, Jaepil; 
  • Kim, Young-Jin; 
  • Catalao, Joao P. S.
Citations

WEB OF SCIENCE

39
Citations

SCOPUS

39

초록

Hydrogen energy storage (HES) has attracted renewed interest as a means to enhance the flexibility of power balancing to achieve the goal of a low-carbon grid. This paper presents an innovative data-driven HES model that reflects the interactive operations of an electrolyzer, a fuel cell, and hydrogen tanks. A model predictive control strategy is then developed, in which HES units support the frequency regulation (FR) of a microgrid (MG). In the proposed strategy, an MG-level controller is designed to optimize power sharing, to allow the HES units to respond quickly to power supply-and-demand imbalances, while distributed generators compensate for any remaining imbalance. The MG-level controller cooperates with the HES-level controllers, which change the operating modes and override the FR supports based on the hydrogen levels. Small-signal analysis is conducted to evaluate the contribution and sensitivity of the FR supports. Comparative case studies are also carried out, wherein HES model accuracy is verified and a hardware-in-the-loop simulation is implemented. The results of the small-signal analysis and case studies confirm that the proposed strategy is effective for reducing frequency deviations under various MG conditions, characterized by the net load demand, line congestion, plug-and-play, model parameters, and communication time delays.

키워드

Load modeling; Hydrogen; Power system dynamics; Analytical models; Fuel cells; Real-time systems; Energy storage; Data-driven model; distributed generators; frequency regulation; hydrogen energy storage; microgrid; model predictive control; FUEL-CELL; SYSTEM; ELECTROLYZER; MANAGEMENT; INTEGRATION; VALIDATION; STRATEGY
제목
Data-Driven Modeling and Optimal Control of Hydrogen Energy Storage for Frequency Regulation
저자
Lee, Gi-Ho; Park, Jae-Young; Ban, Jaepil; Kim, Young-Jin; Catalao, Joao P. S.
DOI
10.1109/TEC.2022.3221165
발행일
2023-06
유형
Article
저널명
IEEE Transactions on Energy Conversion
권
38
호
2
페이지
1231 ~ 1245