DOI QR코드

DOI QR Code

회전자 속도에 따라 변동하는 풍력발전단지 주파수 편차 루프 제어 연구

Control of the Wind Power Plant Frequency Variance Loop with Respect to Rotor Speed

  • 이창민 ;
  • 최현준 ;
  • 박지훈 ;
  • 김성환
  • Chang Min Lee (Department of Electrical Engineering, Mokpo National University) ;
  • Hyen jun Choi (Department of Wind Power Industry, Green Energy Istitute) ;
  • Ji Hoon Park (Department of Wind Power Industry, Green Energy Istitute) ;
  • Seong Hwan Kim (Department of Electrical Engineering, Mokpo National University)
  • 투고 : 2024.05.09
  • 심사 : 2024.06.20
  • 발행 : 2024.06.25

초록

To ensure the frequency stability of wind power generation, we analyzedd the existing technology and proposedd a method for changing the gain value with respect to to the rotor speed by adding the MPPT reference value and output reference value that reflect the system frequency. The MPPT control and output were compared and calculated for performance verification. Subsequently, the application of the proposed algorithm led to an increased output when compared with that of the existing control method.

키워드

과제정보

본 논문은 산업통상자원부(MOTIE)와 한국에너지기술평가원(KETEP)의 지원을 받아 수행한 "복수 풍력 단지 연계형 통합 제어 기술 개발 및 실증" 연구과제 결과물을 기초로 작성되었습니다(산업통상자원부공고(No. 20183010025170)).

참고문헌

  1. Korean government, 2020, "Korea 2050 carbon neutral strategy", 14, https://unfccc.int/documents/267683.
  2. Jeong, M.S., Seo, S.S., Jo, B.K., and Kim, S.K., 2023, "A review on the P2G system integration as an essential strategy of the energy transition toward carbon-neutral Korea", KIEE Magazine, 72(3), 30-38.
  3. Park, S.C., 2020, "A study on characteristics and strategies of the United Kingdom'energy transition policy", Korean Journal of EU Studies, 25(1), 39-77.
  4. Ministry of Trade, Industry and Energy, 2023, "10th Basic plan for electricity supply and demand (2022- 2036)", Accessed 12 January 2023, https://korea.kr/briefing/pressReleaseView.do?newsId=156547521.
  5. Shen, B., Mwinyiwiwa, B., Zhang, Y., and Ooi, B.-T., 2009, "Sensorless maximum power point tracking of wind by DFIG using rotor position phase lock loop (PLL)", IEEE Trans. Power Elect., 24(4), 942-951.
  6. Li, S., Hu, J., Wang, S., He, H., Wang, L., and Liu, G., 2014, "A novel inertial control strategy for full-capacity wind turbine with PLL by optimizing internal potential response", Proc. IEEE Int. Conf. on Electrical Machines and Systems (ICEMS), 3024-3028.
  7. Margaris, I.D., Hansen, A.D., Cutululis, N.A., Sorensen, P., and Hatziargyriou, N.D., 2011, "Impact of wind power in autonomous power systems-Power fluctuations-Modelling and control issues", Wind Energy, 14(1), 133-153.
  8. Miller, N., Manz, D., Johal, H., Achilles, S., Roose, L., and Griffin, J.P., 2011, "Integrating high levels of wind in island systems: Lessons from Hawaii", Proc. IEEE ICSET 2010.
  9. Kondoh, J., 2010, "Autonomous frequency regulation by controllable loads to increase acceptable wind power generation", Wind Energy, 13(6), 529-541.
  10. Wang, Q., and Chang, L., 2004, "An intelligent maximum power extraction algorithm for inverter-based variable speed wind turbine systems", IEEE Transactionson Power Electronics, 19(5), 1242-1249.
  11. Kayikci, M., and Milanovic, J.V., 2009, "Dynamic contribution of DFIG-based wind plants to system frequency disturbances", IEEE Trans. Power Syst., 24(2), 859-867.
  12. Margaris, I.D., Papathanassiou, S.A., Hatziargyriou, N.D., Hansen, A.D., and Sorensen, P., 2012, "Frequency control in autonomous power systems with high wind power penetration", IEEE Trans. Sustain. Energy, 3(2), 189-199.
  13. Conroy, J.F., and Watson, R., 2008, "Frequency response capability of full converter wind turbine generators in comparison to conventional generation", IEEE Trans. Power Syst., 23(2), 649-656.
  14. Lee, J., Muljadi, E., Sorensen, P., and Kang, Y.C., 2016, "Releasable kinetic energy-based inertial control of a DFIG wind power plant", IEEE Trans. Sustain. Energy, 7(1), 279288.
  15. Kim, Y., 2016, "Frequency regulation of a variable-speed wind turbine generator using the frequency deviation loop based on the rotor speed-dependent gain", Doctor's degree, Jeonbuk National University, Jeonju-si.
  16. Ministry of Trade, Industry and Energy, 2022, "Maintenance of power system reliability and electrical quality (Table 16 System Protection Procedures among the Rules of Operation of the Electricity Market)", https://www.law. go.kr/LSW/admRulLsInfoP.do?admRulSeq=2100000 211645.
  17. Chen, Z., Guerrero, J.M., and Blaabjerg, F., 2009, "A review of the state of the art of power electronics for wind turbines", IEEE Trans. Power Electron., 24(8), 1859-1875.