BibTex RIS Kaynak Göster

SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER

Yıl 2009, Cilt: 9 Sayı: 1, 801 - 807, 14.02.2012

Öz

SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER

Kaynakça

  • Akagi H.,. Kanazawa Y., Nabae A., "Generalized Theory of the lnrtrntansour Reactive Power in Three-Phssc Circuirs," in Pror IPEC-Tokyo'93 Int. CO"[ Power Electronics, pp. 1375-1186. Tokyo, 1983.
  • Akagi H.,. Kanazwa Y., Narbae A.,. "lnswntanmu~ Rerclivs Powsr Compensator Comprising Switching Devices Without Energy Storage Componcntr", IEEE Tranrocrionr on Indurtv Applicormrrr, Vol: IA-20, No. I, pp. 625-630, 1984.
  • Marques G.D., “A Comparison of Active Power Filter Control Methods in Unbalanced and Non-sinusoidal Conditions” IEEE Press, pp. 444 – 449, 1998.
  • Watanibe E.H., Stsphm R.M., Ardes M., "New Concepts of Instantaneous Active and Reactive Powers in Electrical Systems with Generic Lauds'' IEEE Tram on Power Deliver, Vol: 8,No. 2, pp. 697-703, April, 1993.
  • Susaki Y., Matsumura T., Genji T., Inoue J., Yoshioka K., Kohata M., “Development and proof examination result of Active Filter for Power Distribution Systems”, Trans. Inst. Elect. Eng. Jpn., Vol: 120-B, No. 5, pp. 746-752, 2000. [6] Wada K., Fujita H., Akagi H. “ Considerations of a Shunt Active Filter Based on on Voltage Detection for Installation on a Long Distribution Feeder” in Proc. Conf. IEEE-IAS Ann. Meeting, 2001, pp. 157-163.
  • Liserre M., Blaabjerg F., Hansen S., “‘Design and Control of an LCL-Filter based Active Rectifier”, Proc. Of IAS, 2001, pp. 299-307, Sept. /Oct. 2001.
  • Benachaiba C., Mazari B., Rahli M. “Minimisation des Courants Harmoniques par la Technique d’Optimisation de la commutation Forcée d’un Convertisseur AC/DC”, Sciences et Technologie, B-No. 21, juin 2004, pp. 71-74.
  • Benachaiba C., Mazari B., “Etude de la Compatibilité entre les Courants Harmoniques dans un Système de Filtrage Actif Parallèle”, Conf. on Elect. Engin. (CEE’02), Univ. de Batna, Algérie.
  • Akagi H., “New Trends in Active Filter for power conditioning”, IEEE Trans. Ind. Application, Vol: 32, No. 6, pp. 1312-1322, 1996.
  • Bhattacharya S., Divan D.M., Banerjee B., “Synchronous reference harmonic isolator using active series filter,” in Proc. EPE Conf., Florence, Italy, 1991, pp. 30–35.
  • Soares V., Verdelho P., Marques G.D., “An instantaneous active and reactive current component method for active filters”, IEEE Trans. Power Electron., Vol: 15, pp. 660–669, July, 2000.
  • Souvik C., Ramanarayanan V., “Phase- Angle Balance Control for Harmonic Filtering of a Three-Phase Shunt Active Filter System” IEEE transactions on industry applications, Vol: 39, No. 2, March/April, 2003, pp. 565 – 574.
Yıl 2009, Cilt: 9 Sayı: 1, 801 - 807, 14.02.2012

Öz

Kaynakça

  • Akagi H.,. Kanazawa Y., Nabae A., "Generalized Theory of the lnrtrntansour Reactive Power in Three-Phssc Circuirs," in Pror IPEC-Tokyo'93 Int. CO"[ Power Electronics, pp. 1375-1186. Tokyo, 1983.
  • Akagi H.,. Kanazwa Y., Narbae A.,. "lnswntanmu~ Rerclivs Powsr Compensator Comprising Switching Devices Without Energy Storage Componcntr", IEEE Tranrocrionr on Indurtv Applicormrrr, Vol: IA-20, No. I, pp. 625-630, 1984.
  • Marques G.D., “A Comparison of Active Power Filter Control Methods in Unbalanced and Non-sinusoidal Conditions” IEEE Press, pp. 444 – 449, 1998.
  • Watanibe E.H., Stsphm R.M., Ardes M., "New Concepts of Instantaneous Active and Reactive Powers in Electrical Systems with Generic Lauds'' IEEE Tram on Power Deliver, Vol: 8,No. 2, pp. 697-703, April, 1993.
  • Susaki Y., Matsumura T., Genji T., Inoue J., Yoshioka K., Kohata M., “Development and proof examination result of Active Filter for Power Distribution Systems”, Trans. Inst. Elect. Eng. Jpn., Vol: 120-B, No. 5, pp. 746-752, 2000. [6] Wada K., Fujita H., Akagi H. “ Considerations of a Shunt Active Filter Based on on Voltage Detection for Installation on a Long Distribution Feeder” in Proc. Conf. IEEE-IAS Ann. Meeting, 2001, pp. 157-163.
  • Liserre M., Blaabjerg F., Hansen S., “‘Design and Control of an LCL-Filter based Active Rectifier”, Proc. Of IAS, 2001, pp. 299-307, Sept. /Oct. 2001.
  • Benachaiba C., Mazari B., Rahli M. “Minimisation des Courants Harmoniques par la Technique d’Optimisation de la commutation Forcée d’un Convertisseur AC/DC”, Sciences et Technologie, B-No. 21, juin 2004, pp. 71-74.
  • Benachaiba C., Mazari B., “Etude de la Compatibilité entre les Courants Harmoniques dans un Système de Filtrage Actif Parallèle”, Conf. on Elect. Engin. (CEE’02), Univ. de Batna, Algérie.
  • Akagi H., “New Trends in Active Filter for power conditioning”, IEEE Trans. Ind. Application, Vol: 32, No. 6, pp. 1312-1322, 1996.
  • Bhattacharya S., Divan D.M., Banerjee B., “Synchronous reference harmonic isolator using active series filter,” in Proc. EPE Conf., Florence, Italy, 1991, pp. 30–35.
  • Soares V., Verdelho P., Marques G.D., “An instantaneous active and reactive current component method for active filters”, IEEE Trans. Power Electron., Vol: 15, pp. 660–669, July, 2000.
  • Souvik C., Ramanarayanan V., “Phase- Angle Balance Control for Harmonic Filtering of a Three-Phase Shunt Active Filter System” IEEE transactions on industry applications, Vol: 39, No. 2, March/April, 2003, pp. 565 – 574.
Toplam 12 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Makaleler
Yazarlar

O. Abdelkhalek Bu kişi benim

C. Benachaıba Bu kişi benim

Yayımlanma Tarihi 14 Şubat 2012
Yayımlandığı Sayı Yıl 2009 Cilt: 9 Sayı: 1

Kaynak Göster

APA Abdelkhalek, O., & Benachaıba, C. (2012). SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER. IU-Journal of Electrical & Electronics Engineering, 9(1), 801-807.
AMA Abdelkhalek O, Benachaıba C. SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER. IU-Journal of Electrical & Electronics Engineering. Şubat 2012;9(1):801-807.
Chicago Abdelkhalek, O., ve C. Benachaıba. “SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER”. IU-Journal of Electrical & Electronics Engineering 9, sy. 1 (Şubat 2012): 801-7.
EndNote Abdelkhalek O, Benachaıba C (01 Şubat 2012) SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER. IU-Journal of Electrical & Electronics Engineering 9 1 801–807.
IEEE O. Abdelkhalek ve C. Benachaıba, “SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER”, IU-Journal of Electrical & Electronics Engineering, c. 9, sy. 1, ss. 801–807, 2012.
ISNAD Abdelkhalek, O. - Benachaıba, C. “SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER”. IU-Journal of Electrical & Electronics Engineering 9/1 (Şubat 2012), 801-807.
JAMA Abdelkhalek O, Benachaıba C. SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER. IU-Journal of Electrical & Electronics Engineering. 2012;9:801–807.
MLA Abdelkhalek, O. ve C. Benachaıba. “SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER”. IU-Journal of Electrical & Electronics Engineering, c. 9, sy. 1, 2012, ss. 801-7.
Vancouver Abdelkhalek O, Benachaıba C. SENSITIVITY ASSESSMENT OF PQ THEORY AND SYNCHRONOUS DETECTION IDENTIFICATION METHODS OF CURRENT HARMONICS UNDER NON-SINUSOIDAL CONDITION FOR SHUNT ACTIVE FILTER. IU-Journal of Electrical & Electronics Engineering. 2012;9(1):801-7.