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Combined monitoring and time-frequency analysis for transients in wind energy systems

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of this paper is the application of selected time-varying power quality indices combined with detailed time-frequency analysis for assessment of transients in wind energy system. Presented proposition utilizes short-term harmonic distortion in voltage (STHDV) characteristic as an indicator for detail local time-frequency analysis of the transients. Introduced ideas can be treated as hybrid system absorbing both power quality indices and time-frequency representation.
Rocznik
Tom
Strony
261--269
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
autor
  • Wroclaw University of Technology 50-370 Wrocław, Wybrzeże Wyspianskiego 27
autor
  • Wroclaw University of Technology 50-370 Wrocław, Wybrzeże Wyspianskiego 27
autor
  • Carlos III University of Madrid
autor
  • Carlos III University of Madrid
autor
  • Carlos III University of Madrid
Bibliografia
  • [1] Ackerman T., Wind power in power systems, John Wiley & Sons, 2005.
  • [2] Ackerman T., Embedded wind generation in weak grids economic optimisation and power quality simulation, Renewable Energy, vol.18, pp. 205-221, 1999.
  • [3] Dugan R. C. et al, “Electrical Power Systems Quality”, McGraw-Hill, 2004.
  • [4] Dugan R.C. Mcdermontt E et al, “Distributed Generation”, IEEE Industry Application Magazine, 2002.
  • [5] Dugan R.C. Mcdermontt E et al, “PQ, Reliability and DG”, IEEE Industry Application Magazine, 2003.
  • [6] Dugan R.C.,Walling R.A. et al, “Summary of Distributed Resources Impact on Power Delivery Systems”, IEEE Transactions on power delivery, vol.23, no 3, 2008.
  • [7] Baggini A., “Handbook of Power Quality”, John Wiley & Sons, 2008.
  • [8] Bollen M., Gu I., “Signal processing of power quality disturbances”, John Wiley & Sons, IEEE, 2006.
  • [9] Bollen M., Renders B. et all, “Distributed Generation for Mitigating Voltage Dips in Low-Voltage Distribution Grids”, IEEE Transaction on Power Delivery vol. 23, no 3. 2008.
  • [10] Heydt G.T., Fjeld P.S.,Liu C.C., Pierce D., Tu L., Hensley G., Applications of the Windowed FFT to Electric Power Quality, IEEE Trans. Power Delivery, vol. 14, no. 4, pp. 1411-1416, 1999.
  • [11] Jaramillo S.H., Heydt G.T., O’Neill-Carrillo E., Power Quality Indices for Aperiodic Voltages and Currents, IEEE Trans. Power Delivery, vol. 15, no. 5, pp. 784-790, 2000.
  • [12] Shin Y.J., Power E.J., Grady M., Araposthasis A., Power quality indices for transient disturbances, IEEE Trans. Power Delivery, vol. 21, no. 1, pp. 253-261, 2006.
  • [13] Shin Y.J., Power E.J., Grady M., Araposthasis A., Signal Processing-Based Direction Finder for Transient Capacitor Switching Disturbances, IEEE Trans. Power Delivery, vol. 23, no. 4, p. 2555-2562, 2008.
  • [14] Yu-Hua Gu I., Bollen M.H.J: Time-Frequency and Time-Scale Domain Analysis of Voltage Disturbances, EEE Trans. Power Delivery, vol. 15, no. 4, p. 1279-1284, 2000.
  • [15] Yu-Hua Gu I., Bollen M.H.J: Estimating Interharmonics by Using Sliding-Window ESPRIT, EEE Trans. Power Delivery, vol. 23, no. 1, p. 13-23, 2008.
  • [16] Łobos T., Rezmer J, Janik P., Amaris H., Alvarez C., Florez D: Application of wavelets and Prony method for disturbance detection in fixed speed wind farms, Electrical Power and Energy Systems, vol. 31, pp. 429-436, 2009.
  • [17] Sikorski T., Ruczewski P., Lobos T., Time-Frequency Representation for Non-Stationary Phenomena in Electrical Engineering, Przeglad Elektrotechniczny, no. 2, 2005.
  • [18] Leonowicz Z., Lobos T., Sikorski T., Time-frequency Analysis of Complex Space Phasor in Power Electronics, IEEE Transactions on Instrumentation and Measurement, vol. 43, no. 4, pp. 971-980, 2007.
  • [19] Sikorski T., Ziaja E., “Advanced signal representation methods for analysis of transient states in embedded generation systems”, Systems - Journal of Transdisciplinary Systems Science, vol. 13, 2008.
  • [20] Sikorski T., Ziaja E., Herlender K., Bobrowicz W., Power quality disturbances in power system with distributed generation, 9th International Conference on Environment and Electrical Engineering, s. 553-556, 2010.
  • [21] Pudjianto D, Ramsay C, Strbac G., “Microgrids and virtual power plants: concepts to support the integration of distributed energy resources”, Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy, Volume 222, Number 7 / 2008.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-aff50662-8442-4769-ae86-f348bc54b200
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