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A Method for Harmonic Measurement of Real Power Grid Signals with Frequency Drift using Instruments with Internally Generated Reference Frequency Cover

A Method for Harmonic Measurement of Real Power Grid Signals with Frequency Drift using Instruments with Internally Generated Reference Frequency

Open Access
|Dec 2012

References

  1. [1] Stones, J., Collinson, A. (2001). Power quality., 15 (2), 58-64.
  2. [2] Ghandehari, R., Jalilian, A. (2004). Economical impacts of power quality in power systems. In, 6-8 September 2004. IEEE, Vol. 2, 893-897.
  3. [3] Thapar, A., Saha, T.K., Zhao, Y.D. (2004). Investigation of power quality categorisation and simulating its impact on sensitive electronic equipment. In, 6-10 June 2004. IEEE, Vol. 1, 528-533.
  4. [4] Sermon, R.C. (2005). An overview of power quality standards and guidelines from the end-user's point-of view. In, 8-10 May 2005. IEEE, B1/1-B1/5.
  5. [5] Broshi, A. (2007). Monitoring power quality beyond EN 50160 and IEC 61000-4-30. In, 9-11 October 2007. IEEE, 1-6.
  6. [6] Kuhlmann, V., Sinton, A., Dewe, M., Arnold, C. (2007). Effects of sampling rate and ADC width on the accuracy of amplitude and phase measurements in power-quality monitoring., 22 (2), 758-764.
  7. [7] European Committee for Standardization. (1999).European Standard EN 50160.
  8. [8] Mandache, L., Al-Haddad, K. (2005). New high precision harmonic analysis method for power quality assessment. In, 1-4 May 2005. IEEE, 1958-1961.
  9. [9] Szmajda, M., Gorecki, K., Mroczka, J. (2007). DFT algorithm analysis in low-cost power quality measurement systems based on a DSP processor. In, 9-11 October 2007. IEEE, 1-6.
  10. [10] Moo, C.S., Chang, Y.N., Mok, P.P. (1995). A digital measurement scheme for time-varying transient harmonics., 10 (2), 588-594.
  11. [11] Karimi-Ghartemani, M., Iravani, M.R. (2005). Measurement of harmonics/inter-harmonics of timevarying frequencies., 20 (1), 23-31.
  12. [12] Yoon, W.K., Devaney, M.J. (2000). Reactive power measurement using the wavelet transform., 49 (2), 246-252.
  13. [13] Espel, P., Poletaeff, A., Ndilimabaka, H. (2010). Traceability of voltage measurements for nonsinusoidal waveforms., 10 (6), 200-204.
  14. [14] Vujicic, V.V., Milovancev, S.S., Pesaljevic, M.D., Pejic, D.V., Zupunski, I.Z. (1999). Low-frequency stochastic true RMS instrument., 48 (2), 467-470.
  15. [15] Vujicic, V.V. (2001). Generalized low frequency stochastic true RMS instrument., 50, 1089-1092.
  16. [16] Pjevalica, V., Vujicic, V. (2005). Further generalization of the low-frequency true-RMS instrument. In, May 2005. IEEE, 1008-1011.
  17. [17] Weierstrass, K. (1885). Über die analytische Darstellbarkeit sogenannter willkürlicher Functionen einer reellen Veränderlichen. In.
  18. [18] Stone, M.H. (1948). The generalized Weierstrass approximation theorem.21 (4), 167-184; 21 (5), 237-254.
  19. [19] Kamenský, M., Kováč, K. (2011). Correction of ADC errors by additive iterative method with dithering., 11 (1), 15-18.
  20. [20] Hegeduš, H., Mostarac, P., Malarić, R. (2011). Comparison of RMS value measurement algorithms of non-coherent sampled signals., 11 (3), 79-84.
  21. [21] Antic, B., Pjevalica, N. (2006). A new approach to power grid measurements - measuring in frequency domain. In, October 17-20 2006. Book of Abstracts, 37-38.
  22. [22] Agrež, D. (2010). Estimation and tracking of the power quality disturbances in the frequency domain., 10 (6), 189-194.
  23. [23] Acton, F.S. (1990).(2nd ed.). Washington, DC: Mathematical Association of America, 161-163.
  24. [24] Intel Corporation. (2012).http://www.intel.com/p/en_US/support/processors
  25. [25] Advanced Micro Devices, Inc. (2012).http://www.amd.com/us/products/Pages/products.aspx
  26. [26] Altera Corporation. (2011).http://www.altera.com/literature/ug/ ug_altfp_mfug.pdf[27] Advanced Micro Devices, Inc. (2012).http://sites.amd.com/us/Documents/49747D_HPC_Processor_Comparison_v3_July2012.pdf
  27. [28] Texas Instruments. (2012).http://www.ti.com/lsds/ti/dsp/embedded_processor.page
  28. [29] Hindriksen, V. (2012).. http://www.streamcomputing.eu/blog/2012-08-27/processors-that-can-do-20-gflopswatt/
  29. [30] Kundur, P., Paserba, J., Ajjarapu, V., et al. (2004). Definition and classification of power system stability IEEE/CIGRE joint task force on stability terms and definitions., 19 (2), 1387-1401.
  30. [31] Horne, J., Flynn, D., Littler, T. (2004). Frequency stability issues for islanded power systems. In, 10-13 October 2004. IEEE, Vol. 1, 299-306.
  31. [32] Cai, Z.X., Ni, Y.X. (2000). A direct method for frequency stability assessment of power systems. In, 30 October - 1 November 2000. IEEE, Vol. 1, 285-289.
  32. [33] Antic, B.M., Vujicic, V.V. (2007). An improved version of the stochastic harmonic instrument. In, 26-28 September 2007.
  33. [34] Tomic, J. (2004).. Unpublished M.Sc. thesis, University of Novi Sad, Faculty of Technical Sciences, Novi Sad, Serbia.
Language: English
Page range: 277 - 285
Published on: Dec 15, 2012
Published by: Slovak Academy of Sciences, Institute of Measurement Science
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2012 B.M. Antić, Z.L. Mitrović, V.V. Vujičić, published by Slovak Academy of Sciences, Institute of Measurement Science
This work is licensed under the Creative Commons License.