References
- A. Ghosh and G. Ledwich, Power Quality Enhancement using Custom Power Devices, London, Kluwer Academic Publishers, 2002.
- B. Singh, A. Chandra and K. Al-Haddad, "A review of active filters for power quality improvement," IEEE Trans. Industrial Electronics, Vol. 46, No. 5, pp.960-971, Oct. 1999. https://doi.org/10.1109/41.793345
- H. Akagi, "New trends in active filters for power conditioning," IEEE Trans. Industry Applications, Vol. 32, pp.1312-1322, Nov.-Dec.96. https://doi.org/10.1109/28.556633
- B. Singh, V. Verma, A. Chandra and K. Al-Haddad, "Hybrid filters for power quality improvement," IEE Proc. Generation, Transmission and Distribution, Vol.152, pp. 365–378, May 2005. https://doi.org/10.1049/ip-gtd:20045027
- H. Fujita and H. Akagi, "A practical approach to harmonic compensation in power systems-series connection of passive and active filters," IEEE Trans. Industry Applications, Vol. 27, No.6, pp.1020-1025, Nov-Dec 1991. https://doi.org/10.1109/28.108451
- L. Moran, I. Pastorini, J. Dixon and R. Wallace, "Series active power filter compensates current harmonics and voltage unbalance simultaneously," Proc.IEE Gener., Trans. and Distrib., Vol. 147, No.1, pp.31–36, Jan. 2000. https://doi.org/10.1049/ip-gtd:20000027
- A. Chandra, B. Singh, B. N. Singh and K. Al-Haddad, "An improved control algorithm of shunt active filter for voltage regulation, harmonic elimination, power-factor correction, and balancing of nonlinear loads," IEEE Trans. Power Electronics, Vol.15, no.3, pp.495-507, May 2000. https://doi.org/10.1109/63.844510
- F. Barrero, S. Martinez, F. Yeves, F. Mur, and P.M. Martinez, "Universal and reconfigurable to UPS active power filter for line conditioning," IEEE Trans. Power Delivery, Vol. 18, No. 1, pp. 283 –290, Jan. 2003. https://doi.org/10.1109/TPWRD.2002.804014
- A. Elnady, W. El-Khattam, and M.M.A. Salama, "Mitigation of AC arc furnace voltage flicker using the unified power quality conditioner," in Proc. IEEE PES Winter Meeting'02, pp. 735-739, 2002.
- R. Faranda, R. and I. Valade, "UPQC compensation strategy and design aimed at reducing losses," in Proc. IEEE-ISIE'02, pp. 1264 -1270, 2002.
- S.J. Chiang, W.J. Ai, and F.J. Lin, "Parallel operation of capacity-limited three-phase four-wire active power filters," IEE Proc. Electric Power Applications, Vol.149, No. 5, pp. 329 –336, Sept. 2002. https://doi.org/10.1049/ip-epa:20020478
- S.J. Chiang, "A three-phase four-wire power conditioner with loaddependent voltage regulation for energy saving," in Proc. IEEE APEC'03, 2003, pp. 159 –164.
- Amit Kumar Jindal, Arindam Ghosh and Avinash Joshi, "The protection of sensitive loads from interharmonic currents using shunt/series active filters," J. Electric Power Syst. Res., Vol. 73, pp. 187-196, Feb. 2005. https://doi.org/10.1016/j.epsr.2004.08.003
- M. A. Hannan and A. Mohamed, "PSCAD/EMTDC simulation of unified series-shunt compensator for power quality improvement," IEEE Trans. Power Delivery, Vol. 20, pp. 1650–1656, Apr. 2005. https://doi.org/10.1109/TPWRD.2004.833875
- S.A.O. da Silva, P.F. Donoso-Garcia, P.C. Cortizo, P.F. Seixas, "A comparative analysis of control algorithms for three-phase line-interactive UPS systems with series-parallel active power-line conditioning using SRF method," in Proc. IEEE PESC'00, pp. 1023 -1028, 2000.
- C. Zhan, V.K. Ramachandaramurthy, A. Arulampalam, C. Fitzer, M. Barnes and N. Jenkins, "Universal custom power conditioner (UCPC) with integrated control," in Proc. IEEE PES Winter Meeting'01, pp.1039 -1044, 2001,
- H. Fujita and H. Akagi, "The unified power quality conditioner: The integration of series active filters and shunt active filters," IEEE Trans. Power Electronics, Vol. 13, pp.315-322, Mar. 1998. https://doi.org/10.1109/63.662847
- A. Elnady, and M.M.A. Salama, "New functionalities of the unified power quality conditioner," in Proc. IEEE-PES T&D Conf.'01, 2001, pp. 415 -420.
- A. Elnady, and M.M.A. Salama, "New functionalities of an adaptive unified power quality conditioner," in Proc. IEEE-PES Winter Meeting'01, pp. 295 -300, 2001.
- A. Ghosh and G. Ledwich, "A unified power quality conditioner (UPQC) for simultaneous voltage and current compensation," Journal of Electric Power Systems Research, Vol. 59, pp. 55-63, Aug. 2001. https://doi.org/10.1016/S0378-7796(01)00141-9
- V. Khadkikar, P. Agarwal, A. Chandra, A. O. Barry and T. D. Nguyen, "A simple new control technique for unified power quality conditioner (UPQC)," in Proc.11th Int.Conf. on Harmonics and Quality of Power, pp. 289 - 293, Sep. 2004.
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