E.F. Fuchs and M.A.S. Masoum


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  3. [3] K. Oberretl, Allgemeine oberfeldtheorie für einund dreiphasige asynchronund linearmotoren mit k¨afig unter berücksichtigung der mehrfachen ankerrückwirkung und der nutöffnungen, teil I: Theorie und berechnungsverfahren, teil II: Resultate, vergleich mit messungen, Archiv für Elektrotechnik, 76, 1993, 111–120, 201–212.
  4. [4] E.F. Fuchs, D.J. Roesler, & F.S. Alashhab, Sensitivity of electrical appliances to harmonics and fractional harmonics of the power system’s voltage, Part I, IEEE Trans. on Power Delivery, TPWRD-2 (2), 1987, 437–444.
  5. [5] E.F. Fuchs, D.J. Roesler, & K.P. Kovacs, Sensitivity of electrical appliances to harmonics and fractional harmonics of the power system’s voltage, Part II, IEEE Trans. on Power Delivery, TPWRD-2(2), 1987, 445–453.
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  7. [7] E.F. Fuchs, D.J. Roesler, & M.A.S. Masoum, Are harmonic recommendations according to IEEE and IEC too restrictive? IEEE Trans. on Power Delivery, 19 (4), 2004, 1775–1786.
  8. [8] J.P.G. de Abreu & A.E. Emanuel, The need to limit subharmonic injection, Proc. 9th International Conf. on Harmonics and Quality of Power, I, 1–4 October 2000, 251–253.
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  13. [13] E.F. Fuchs, M.A.S. Masoum, & M. Ladjevardi, Effects on distribution feeders from electronic loads based on future peak-load growth, Part I: Measurements, Proc. IASTED International Conf. on Power and Energy Systems (EuroPES 2005), Paper # 468-019, Benalmadena, Spain, June 15–17, 2005.
  14. [14] IEEE Standard 519, IEEE recommended practices and requirements for harmonic control in electric power systems, IEEE-519, 1992.
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  16. [16] E.F. Fuchs & M.A.S. Masoum, Power quality in power systems and electrical machines (USA: Academic Press, 2008).

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