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Smart grids : general review of synchronization techniques

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Warianty tytułu
PL
Sieci “smart grids” : wyzwania synchronizacji
Języki publikacji
EN
Abstrakty
EN
This paper deals with crucial aspect of synchronization in modern power grids. It presents the concept of intelligent networks (“smart grids”), as the future of today’s grid infrastructure. The diversity of different grid codes in regards to the synchronization requirements for different Transmission System Operators (TSO) is discussed. This paper shows the applications of synchronizing algorithms, their role in power grid system.. The methods are classified according to application, the reference frame used and the possibility of using them in single and three phase systems. Proper selection of synchronization algorithms to meet the requirements of TSO’s calls for creation of appropriate evaluation methods. For this reason, at the end of the article quality criteria for the evaluation of synchronizing algorithms were proposed and explained in detail. Finally, the last section states what are the most commonly used methods for grid synchronization.
PL
Niniejszy artykuł zajmuje się kluczowym aspektem, jakim jest synchronizacja w nowoczesnych sieciach elektroenergetycznych. Przedstawia on koncepcję sieci inteligentnych („smart grids”),uważaną jako przyszłość dzisiejszej infrastruktury sieciowej. Omówiono w nim różnice w zakresie przepisów sieci energetycznych różnych operatorów w odniesieniu do wymagań synchronizacji z siecią. Opisane metody sklasyfikowano według ich typowych aplikacji, zastosowanego układu odniesienia i możliwości zastosowania w systemie jedno- lub trójfazowym. Odpowiedni dobór algorytmów synchronizacji by spełnić wymagania TSO postuluje powstanie właściwych metod oceny tych algorytmów. Z tego powodu ostatni punkt artykułu opisuje i wyjaśnia szczegółowo dobrane kryteria oceny jakości algorytmów do synchronizacji. W ostatniej sekcji artykułu pokazano jakie są najczęściej stosowane metody do synchronizacji z siecią.
Rocznik
Tom
Strony
18--23
Opis fizyczny
Bibliogr. 40 poz., rys., tab.
Twórcy
autor
  • Lublin University of Technology, Electrical Drive and Electrical Machines Department
Bibliografia
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  • [8] Blaabjerg F., Ciobotaru M., Teodorescu R.,: Improved PLL structures for single-phase grid inverters. Power Electronics Electrical Drives Automation and Motion (SPEEDAM), 2010.
  • [9] Blaabjerg F., Ciobotaru, M., Luna A., Rodríguez P., Teodorescu R.: Advanced Grid Synchronization System for Power Converters under Unbalanced and Distorted Operating Conditions. In Proceedings of the 32nd Annual Conference of the IEEE Industrial Electronics Society, IECON 2006, Paris, France, 6-10 November 2006, pp. 5173-5178.
  • [10]Blaabjerg F., Jensen B. B., Kim H.: Spectral analysis of instantaneous powers in single-phase and three-phase systems with use of p-q-r theory. IEEE Trans. Power Electronics, vol. 17, no. 5, pp. 711-720, Sept. 2002.
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  • [12]Blaabjerg F., Liserre M., Rodríguez P., Teodorescu R., Timbus A.V.: PLL Algorithm for Power Generation Systems Robust to Grid Voltage Faults. Power Electronics Specialists Conference, 2006. PESC '06. 37th IEEE.
  • [13]Blaabjerg F., Liserre M., Teodorescu R., Timbus A.V.: Synchronization Methods for Three Phase Distributed Power Generation Systems. An Overview and Evaluation. Power Electronics Specialists Conference, 2005. PESC ’05. IEEE 36th 16-16 June 2005.
  • [14]Boaventura W. C., Campna R. P., Filho B. J., Lopes B. M., Silva S. M.: Performance evaluation of PLL algorithms for single-phase grid-connected systems. Industry Applications Conference, 2004. 39th IAS Annual Meeting. IEEE, Vol. 4.
  • [15]Bobrowska-Rafal M., Jasiński M., Kaźmierkowski M.P., Rafal K.: Grid synchronization and symmetrical components extraction with PLL algorithm for grid connected power electronic converters – a review. Bulletin of the Polish Academy of Sciences, Technical Sciences, Vol. 59, No. 4, 2011.
  • [16]Bojoi R., Limongi L. R., Pica C., Profumo F., Tenconi A.: Analysis and Comparison of Phase Locked Loop Techniques for Grid Utility Applications. Power Conversion Conference - Nagoya, 2007. PCC '07.
  • [17]Bose B.K.: Power Electronics and Motor Drives: Advances and Trends. Academic Press, 2010.
  • [18]Chung S. K.: About design of Closed-Loop 3-phase PLL - A Phase Tracking System for Three Phase Utility Interface Inverters. IEEE TRANSACTIONS ON POWER ELECTRONICS, VOL. 15, NO. 3, MAY 2000.
  • [19]Cichowlas M., Kazmierkowski M. P., Malinowski M., Marques G.: New Direct Power Control of Three-Phase PWM Boost Rectifiers under Distorted and Imbalanced Line Voltage Conditions. In Proceedings of the 2003 IEEE International Symposium on Industrial Electronics, ISIE 2003, Rio de Janeiro, Brazil, 9-11 June 2003, Vol. 1, pp. 438-443.
  • [20]Coelho E., Novochadlo R., Silva S. A.: PLL Structures for Utility Connected Systems under Distorted Utility Conditions. IEEE Industrial Electronics, IECON 2006.
  • [21]Deckmann S.M., Marafao F. P., Sperando G. S., Padue M. S.: Comparative analysis of Synchronization Algorithms based on PLL, RDFT and Kalman Filter. ISIE 2007, pp. 964-970, June 2007.
  • [22]Dianguo X., Weiwei L., Xueguang Z.: A novel PLL design method applied to grid fault condition. Applied Power Electronics Conference and Exposition, 2008. APEC 2008. Twenty-Third Annual IEEE.
  • [23]Finney S.J., Salamah A.M., Williams B.W.: Three-phase phase-lock loop for distorted utilities. IET Electric Power Applications, Volume 1, Issue 6, November 2007, pp. 937 – 945.
  • [24]Ghartemani M., Iravani M. R.: A method for synchronization of power electronic converters in polluted and variable-frequency environments. IEEE Transactions on Power Systems, Issue 3, Vol. 19, 2004.
  • [25]Ghartemani M.: A novel three-phase magnitude-phase-locked loop system. IEEE Transactions on Volume:53 , Issue: 8 , 2006.
  • [26]Golestan S., Guerrero J. G., Freijedo F., Monfared M.: Design and Tuning of a Modified Power-Based PLL for Single phase grid-connected power Conditioning Systems. IEEE Transactions on Power Electronics, Vol. 27, Issue 8, Aug 2012.
  • [27]Gomes C., Mussa S. A., Petry C. A.: Digital Control Based on DPLL of an AC Line Conditioner. Power Electronics Specialists Conference, PESC 2008.
  • [28]Gu H. R., Guo X. Q., Wu W. Y.: Phase Locked loop and synchronization methods for grid-interfaced converters: a review. Przegląd Elektrotechniczny (Electrical Review), ISSN 0033-2097, R. 87 Nr 4/2011.
  • [29]Han Y.: On Using ADALINE Algorithm for Harmonic Estimation and Phase- Synchronization for the Grid-Connected Converters in Smart Grid Applications. 2013 Han, license InTech.
  • [30]Hsieh G.-C., Hung J. C.: Phase-Locked Loop Techniques-A Survey. IEEE Transactions on Industrial Electronics, Vol. 43, Issue 6, 1996.
  • [31]Jarzyna W., Lipnicki P.: The Comparison of Polish Grid Codes to Certain European Standards and Resultant Differences for WPP Requirements. EPE JOINT WIND ENERGY AND T&D CHAPTERS SEMINAR, JUNE 2012.
  • [32]Jovcic D.: Phase Locked Loop System for FACTS. IEEE Trans. On Power Systems, vol. 18, no. 3, pp. 1116.1124, 2003.
  • [33]Kim H., Lee S.-J., Sul S.-K.: Reference Wave Generator in Dynamic Voltage Restorers by use of PQR Power Theory. Proc. Of APEC'04, vol. 3, pp. 1452.1457, 2004.
  • [34]Malko J.: SMART W ENERGETYCE – MODA CZY KONIECZNOŚĆ? Przegląd Elektrotechniczny (Electrical Review), R. 87 Nr 6/2011.
  • [35]Modesto R. A., Novochadlo R., Silva S.: Single-phase PLL structure using modified p-q theory for utility connected systems. Power Electronics Specialists Conference, 2008. PESC 2008. IEEE.
  • [36]Saccomando G., Svensson J.: Transient Operation of Grid connected Voltage Source Converter Under Unbalanced Voltage Conditions. Proc. of IAS'01, vol. 4, pp. 2419.2424, 2001.
  • [37]Suul J.A.: Control of grid Integrated Voltage Source Converters under Unbalanced Conditions. PhD Thesis, Trondheim, March 2012.
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  • [39]Instrukcja Ruchu i Eksploatacji Sieci Przesyłowej – IRiESP, PSE Operator, 1-10-2011.
  • [40]ENTSO-E Draft Network Code for Requirements for Grid Connection applicable to all Generators, European Network of Transmission System Operators for Electricity, 24 January 2012 http://www.entsoe.eu.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-38dcf498-a335-4194-8064-f9365b54753c
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