Open Access
Issue
EPJ Web Conf.
Volume 217, 2019
International Workshop on Flexibility and Resiliency Problems of Electric Power Systems (FREPS 2019)
Article Number 01005
Number of page(s) 4
DOI https://doi.org/10.1051/epjconf/201921701005
Published online 15 October 2019
  1. V. Vittal, N. Bhatia, A.A. Fouad Analysis of the inter-area mode phenomenon in power systems following large disturbances, IEEE Trans. Power Systems. 6(4), (1991) [Google Scholar]
  2. J.J. Sanchez-Gasca, V. Vittal, M.J. Gibbard, et al. Inclusion of higher order terms for small signal (modal) analysis: committee report-task force on assessing the need to include higher order terms for small-signal (modal) analysis, IEEE Trans. Power Syst., 20(4), 1886-1904, (2015) [Google Scholar]
  3. J. Cao, W. Du, H. Wang, Z. Chen, H.F. Li, A Novel Emergency Damping Control to Suppress Power System Inter-Area Oscillations, IEEE Trans. Power Syst., 28(3), 3165-3173, (2013) [Google Scholar]
  4. I. Dobson, Strong Resonance Effects in Normal Form Analysis and Subsynchronous Resonance, in Proc. Bulk Power System Dynamics Control, Onomichi, Japan, (2001) [Google Scholar]
  5. W. Du, Y. Wang, H.F. Wang, Q. Fu, Concept of Modal Repulsion for Examining the Sub-synchronous Oscillations in Power Systems, IEEE Trans. Power Syst., 33(4), 4614-4624, (2018) [Google Scholar]
  6. J.D. McCalley, Transmission Security: Rules, Risks, and Blackouts. [Online]. Available: http://www.ece.cmu.edu/cascadingfailures/OpShrtCrseJDM3.pdf, (2006) [Google Scholar]
  7. S.A.N. Sarmadi, V. Venkatasubramanian, Inter-Area Resonance in Power Systems From Forced Oscillations, IEEE Trans. Power Syst., 31(1), 378-386 (2016). [Google Scholar]
  8. J. Seppänen, J. Turunen, A. Nikkilä, L. Haarla, Resonance of Forcing Oscillations and Inter-Area Modes in the Nordic Power System, 2018 IEEE PES Innovative Smart Grid Technologies Conference Europe (ISGT-Europe), (2018) [Google Scholar]
  9. V.B. Virulkar, G.V. Gotmare, Sub-synchronous resonance in series compensated wind farm: A review, Renewable and Sustainable Energy Reviews, 55, 1010-1029, (2016) [CrossRef] [Google Scholar]
  10. J. Shaira, X. Xiea, L. Wanga, W. Liua, J. Heb, H. Liuc, Overview of emerging subsynchronous oscillations in practical wind power systems, Renewable and Sustainable Energy Reviews, 99, 159-168, (2019) [CrossRef] [Google Scholar]
  11. I.B. Yadykin, D.E. Kataev, A.B. Iskakov, V.K. Shipilov, Characterization of power systems near their stability boundary using the sub-Gramian method. Control Eng. Practice, 53, 173-183, (2016) [CrossRef] [Google Scholar]
  12. S.N. Vassilyev, I.B. Yadykin, A.B. Iskakov, et al., Participation factors and sub-Gramians in the selective modal analysis of electric power systems, IFAC-Papers OnLine, 50(1), 14806-14811, (2017) [CrossRef] [Google Scholar]
  13. F. Du, Q. Fu, H. Wang, Y. Wang, “Concept of modal repulsion for examining the subsynchronous oscillations caused by wind farms in power systems, IEEE Trans. Power Syst., 34(1), 378-386, (2019) [Google Scholar]
  14. P. Kundur, Power Systems Stability and Control. (McGraw-Hill, 1994) [Google Scholar]

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