ANALYSIS OF ELECTROMECHANICAL OSCILLATION IN THE IPS OF UKRAINE USING EUROSTAG AND DIGSILENT POWERFACTORY SOFTWARE TOOLS
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Keywords

Low-frequency oscillations
small signal stability
methodology of study
interconnected to ENTSO-E низькочастотні коливання
розрахунки
коливна стійкість
методика розрахунку
інтеграція до ENTSO-E

How to Cite

[1]
Pavlovskyi , V., Lukianenko , L., Lenga , O., Lambillon , V. and Rese , L. 2015. ANALYSIS OF ELECTROMECHANICAL OSCILLATION IN THE IPS OF UKRAINE USING EUROSTAG AND DIGSILENT POWERFACTORY SOFTWARE TOOLS . Tekhnichna Elektrodynamika. 5 (Sep. 2015), 042.

Abstract

Poorly damped low frequency oscillations – is one of the most complex and significant problems arising in large-scale power systems. The appearance of such oscillations in the power system can lead to system collapse. In the article the possible low-frequency electromechanical oscillations in IPS of Ukraine have been considered. Analysis was performed for three scenarios: 1 – IPS of Ukraine interconnected with united power system of Commonwealth States, 2 – Ukraine operating in isolated (island) mode, 3 – Ukraine interconnected to ENTSO-E. Research was performed involving real practice software. The poorly damped low frequency inter-area oscillations have been determined and compared for each of the scenarios of IPS of Ukraine. References 10, table 3, figures 9.

ARTICLE_7_PDF

References

Analysis of CE inter-area Oscillations of 19 and 24 February 2011. ENTSO-E SG SPD Report. 21.08.2011. Available at: https://www.entsoe.eu/fileadmin/user_upload/_library/ publications/entsoe/RG_SOC_CE/Top7_110913_CE_inter-area-oscil_feb_19th_24th_final.pdf. (accessed 10.06.2015)

Butkevych O. Problem-oriented monitoring of Ukrainian operation condition // Tekhnichna Elektrodynamika. – 2007. – № 5. – Pp. 39–52. (Ukr)

Bobba R.B., Dagle J., Heine E., Khurana H., Sanders W.H., Sauer P., Yardley T. Enhancing Grid Measurements: Wide Area Measurement Systems, NASPInet, and Security // IEEE Power and Energy Magazine. − 2012. − Vol. 10. − No 1. − Pp. 67−73.

Dong Xinwei1, Huang Qian1, Chang Yong. The Monitor of Inter-area Oscillation Based on Wide Area Measurement System // 2012 International Conference on Future Energy, Environment and Materials. − 2012. − Vol. 16. − Part C. − Pp. 2033–2043.

Golub G.H., Van Loan C.F. Matrix Computations. − The John Hopkins University Press, 2013. − 728 p.

Malik O.P, Stroev V.A., Shtrobel V.A., Hancock G.C., Beim R.S. Experimental studies with power system stabilizers on a physical model of a multimachine power system // IEEE Transactions on Power Systems. −1996. − Vol. 2. − Issue 11. − Pp. 807−812.

Pal B., Chaudhuri B. Robust Control in Power Systems. − Springer US, 2005. − 190 p.

Paserba J. Analysis and Control of Power System Oscillations. − Special Publication 38.01.07. − 1996. − Vol. Technical Brochure.

Stogny B.S., Kirilenko A.V., Butkevich A.F., Pavlovsky V.V. Innovative Smart Grid Technologies in Electric Power Industry of Ukraine // 2nd IEEE PES International Conference “Innovative Smart Grid Technologies – Europe 2011”, Dec. 5-7, 2011, Manchester, UK.

Uhlen K., Warland L., Gjerde J.O., Breidablik O., Uusitalo M., Leirbukt A.B., Korba P. Monitoring amplitude, frequency and damping of power system oscillations with PMU measurements // Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century. – 2008. − Pp. 1−7.

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