Integrated D-STATCOM with Supercapacitor Used in IEEE Industrial Distribution System
Main Article Content
Abstract
In this paper, a new control method for DSTATCOM (Distribution STATIC Compensator) applied in IEEE 13-bus industrial distribution system is proposed. The operation of this control method enables D-STATCOM to mitigate every type of voltage distortions caused by Single Line to Ground (SLG), Double Lines to Ground (DLG) and Three Lines to Ground (TLG) faults. This new method is based on two factors; firstly, integrating D-STATCOM and supercapacitor energy storage system and secondly, using of feedback in controller system and determining proportional gain of Proportional-Integral (PI) controller, intelligently. In addition, the 12-pulse DSTATCOM configuration with IGBT is designed and the graphic based models of the D-STATCOM are developed using the PSCAD/EMTDC electromagnetic transient simulation program. As a case study, a 13- bus IEEE industrial distribution system is simulated to verify operation of proposed D-STATCOM.
Article Details
This journal provides immediate open access to its content on the principle that making research freely available to the public supports a greater global exchange of knowledge.
- Creative Commons Copyright License
The journal allows readers to download and share all published articles as long as they properly cite such articles; however, they cannot change them or use them commercially. This is classified as CC BY-NC-ND for the creative commons license.
- Retention of Copyright and Publishing Rights
The journal allows the authors of the published articles to hold copyrights and publishing rights without restrictions.
References
[2] G. F. Reed, M. Takeda and I. Iyoda, “Improved power quality solutions using advanced solidstate switching and static compensation technologies,” in Proc. IEEE Power Engineering Society Winter Meeting, 1999, vol.2, pp. 1132 - 1137.
[3] E. Babaei, A. Nazarloo, and S. H. Hosseini, “Application of flexible control methods for D-STATCOM in mitigating voltage sags and swells,” in Proc. IEEE International Power and Energy Conference (IPEC), Singapore, 2010, pp. 590-595.
[4] S. H. Hosseini, A. Nazarloo, and E. Babaei, “Application of D-STATCOM to improve distribution system performance with balanced and unbalanced fault conditions,” in Proc. IEEE Electrical Power and Energy Conference (EPEC), Canada, 2010, pp. 1-6.
[5] A. Nazarloo, S. H. Hosseini, E. Babaei, M. B. B. Sharifian, “Dynamic model of electrical double layer capacitor applied in D-STATCOM under three lines to ground fault,” in Proc. 25th International Power System Conference (PSC), Iran, 2011, pp. 1-8.
[6] O. Anaya-Lara and E. Acha, “Modelling and analysis of custom power systems by PSCAD/EMTDC,” IEEE Trans. Power Del., vol. 17, no. 1, pp.266-272, Jan. 2002.
[7] H. Hatami, F. Shahnia, A. Pashaei and S.H. Hosseini, “Investigation on D-STATCOM and DVR operation for voltage control in distribution networks with a new control strategy,” IEEE Power Tech., pp. 2207 - 2212, 2007.
[8] A. Nazarloo, S.H. Hosseini, E. Babaei, “Flexible D-STATCOM performance as a flexible distributed generation in mitigating faults,” in Proc. IEEE 2nd Power Electronic, Drive Systems & Technologies Conference (PEDSTC), Iran, 2011, pp. 568 - 573.
[9] Z. Xi, B. Parkhideh and S. Bhattacharya, “Improving distribution system performance with integrated STATCOM and super-capacitor energy storage system,” in Proc. IEEE Power Electronics Specialists Conference, 2008, pp. 1390 - 1395.
[10] S. H. Hosseini, A. Nazarloo, and E. Babaei, “Super-Capacitor based D-STATCOM applied in IEEE 13-Bus industrial distribution system,” in Proc. IEEE 8th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), Thailand, 2011, pp. 715-718.
[11] J. Zhang, “Research on supecapacitor energy storage system for power network,” in Proc. IEEE International Conference on Power Electronics and Drives Systems, 2005, pp. 1366 - 1369.
[12] Transmission & Distribution Committee, IEEE Power Engineering Society, “Test system for harmonic modeling and simulation,” IEEE Trans. on Power Delivery, Vol. 14, pp. 579-583, April 1999.