Damping wide-area oscillations in power systems: a model predictive control design
| dc.contributor.author | Emrah BIYIK | |
| dc.contributor.author | Munir HUSEIN | |
| dc.date.accessioned | 2025-10-22T16:06:04Z | |
| dc.date.issued | 2018 | |
| dc.description.abstract | Electromechanical oscillations in power systems have been observed ever since synchronous generators were interconnected to provide reliability and higher generation capacity and they have become a severe threat for the safe and economic operation of modern interconnected power grids. To dampen these oscillations wide-area damping controllers (WADCs) have been introduced by utilizing wide-area measurement systems and synchronized phasor measurement units. In this paper we present a systematic approach for designing WADCs using a model predictive control (MPC) technique to damp interarea oscillations in the power system. The MPC controller computes optimal control signals for the excitation system of a remote generator where it will supplement the local power system stabilizers that are used as damping controllers. The performance of the proposed approach has been assessed on the IEEE 16-generator 68-bus test system and it is shown that the interarea oscillations can be effectively and robustly damped under varying operation conditions. | |
| dc.identifier.citation | [1] Klein M Rogers GJ Kundur P. A fundamental study of inter-area oscillations in power systems. IEEE T Power Syst 1991, 6: 914-921.[2] Rogers G. Power System Oscillations. Norwell MA USA: Kluwer Academic Publishers 2000.[3] Kundur P. Power System Stability and Control. New York NY USA: McGraw-Hill 1994.[4] Zhou EZ. Application of static VAr compensators to increase power system damping. IEEE T Power Syst 1993, 8: 655-661.[5] Taylor C Erickson D Martin E Venkatasubramanian V. WACS { Wide-area stability and voltage control system: R&D and online demonstration. P IEEE 2005, 93: 892-906.[6] Breulman H Grebe E Losing M Winter W Witzman R Dupuis P Houry MP Margotin T Zerenyi J Dudzik J. Analysis and damping of inter-area oscillations in the UCTE/CENTREL power systems. In: CIGRE 2000, Paris France.[7] Chadwick JE. How a smarter grid could have prevented the 2003 U.S. cascading blackout. In: IEEE 2013 Power and Energy Conference at Illinois, 22{23 February 2013, Champaign IL USA. New York NY USA: IEEE. pp. 65-71.[8] Klein M Rogers GJ Moorty S Kundur P. Analytical investigation of factors in uencing power system stabilizers performance. IEEE T Power Syst 1992, 7: 382-388.[9] Aboul-Ela ME Sallam AA McCalley JD Fouad AA. Damping controller design for power system oscillations using global signals. IEEE T Power Syst 1996, 11: 767-773.[10] Mittelstadt WA Krause PE Overholt PN Hauer JF Wilson RE Rizy DT. The DOE wide-area measurement system (WAMS) project - demonstration of dynamic Information technology for future power system. In: Fault and Disturbance Analysis & Precise Measurements in Power Systems Conference, 8{10 November 1995, Arlington VA USA. pp. 1-8.[11] Phadke AG. Synchronized phasor measurements { a historical overview. In: IEEE/PES Transmission and Distri- bution Conference and Exhibition 2002: Asia Paci c, 6{10 October 2002, Yokohama Japan. New York NY USA: IEEE. pp. 476-479.[12] Tomsovic K Bakken DE Venkatasubramanian V Bose A. Designing the next generation of real-time control communication and computations for large power systems. P IEEE 2005, 93: 965-979.[13] Kamwa I Grondin R Hebert Y. Wide-area measurement based stabilizing control of large power systems { a decentralized/ hierarchical approach. IEEE T Power Syst 2001, 16: 136-153.[14] Zhang Y Bose A. Design of wide-area damping controllers for inter-area oscillations. IEEE T Power Syst 2008, 23: 1136-1143.[15] Maciejowski JM. Predictive Control with Constraints. Harlow UK: Prentice Hall 2002.[16] Wang D Glavic M Wehenkel L. A new MPC scheme for damping wide-area electromechanical oscillations in power systems. In: 2011 IEEE PES PowerTech Conference, 19{23 June 2011, Trondheim Norway. New York NY USA: IEEE. pp. 1-7.[17] Wang L Cheung H Hamlyn A Cheung R. Model predictive adaptive control of inter-area oscillations in multi- generator power system. In: 2009 IEEE PES General Meeting, 26{30 July 2009, Calgary Canada. New York NY USA: IEEE. pp. 1-7.[18] Rossiter JA. Model-Based Predictive Control: A Practical Approach. Boca Raton FL USA: CRC Press 2004. | |
| dc.identifier.issn | 1300-0632 | |
| dc.identifier.uri | https://gcris.yasar.edu.tr/handle/123456789/10941 | |
| dc.language.iso | İngilizce | |
| dc.source | Turkish Journal of Electrical Engineering and Computer Sciences | |
| dc.subject | Mühendislik- Elektrik ve Elektronik | |
| dc.title | Damping wide-area oscillations in power systems: a model predictive control design | |
| dc.type | Article | |
| dc.type | Article | |
| dspace.entity.type | Publication | |
| gdc.coar.type | text::journal::journal article | |
| gdc.index.type | TR-Dizin | |
| oaire.citation.endPage | 478 | |
| oaire.citation.startPage | 467 | |
| publicationissue.issueNumber | 1 | |
| publicationvolume.volumeNumber | 26 | |
| relation.isOrgUnitOfPublication | ac5ddece-c76d-476d-ab30-e4d3029dee37 | |
| relation.isOrgUnitOfPublication.latestForDiscovery | ac5ddece-c76d-476d-ab30-e4d3029dee37 |
