PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Concept of smart ACR setting in real-time operation of power systems

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Koncepcja inteligentnego ustawiania ACR w pracy systemów elektroenergetycznych w czasie rzeczywistym
Języki publikacji
EN
Abstrakty
EN
The automatic circuit recloser (ACR) plays an essential role in the operation of not only the transmission, but also the distribution systems, where it helps to restore normal system operation after a failure, the correct setting of which is very important, especially in terms of transient stability of generators and power system stability as a whole. In this paper, we deal with the correct setting of the ACR cycle based on data from the real operation of the power system and its incorporation into the operational management of the power system.
PL
Automatyczny reklozer (ACR) pełni istotną rolę w pracy nie tylko przekładni, ale również systemów rozdzielczych, gdzie pomaga przywrócić normalną pracę systemu po awarii, której prawidłowe ustawienie jest bardzo ważne, zwłaszcza w zakresie stabilności przejściowej generatorów i stabilności systemu elektroenergetycznego en bloc. W niniejszym artykule zajmujemy się prawidłowym ustawieniem cyklu ACR na podstawie danych z rzeczywistej pracy systemu elektroenergetycznego i jego włączeniem do zarządzania operacyjnego systemem elektroenergetycznym.
Rocznik
Strony
252--259
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
  • FEI Slovak University of Technology, Ilkovičova 3. 812 19 Bratislava, Slovakia
  • FEI Slovak University of Technology, Ilkovičova 3. 812 19 Bratislava, Slovakia
Bibliografia
  • [1] REVÁKOVÁ, Daniela - ELESCHOVÁ, Žaneta - BELÁŇ, Anton. Prechodné javy v elektrizačných sústavách. Bratislava : STU v Bratislave, 2008. 180 s. ISBN 978-80-227-2868-3. *522/06/2008
  • [2] Richards, S., Potts, S., Elliott, G., Bergstrom, M., & Bamber, M. (2011). Network protection and application guide: Protective replays, measurement and control. Alstom Grid.
  • [3] SLAVIK, Jakub - ELESCHOVA, Zaneta . Concept of smart automatic reclosing for transient stability improvement of large power systems . In EPE 2020: 21st International scientific conference on electric power engineering . Prague , Czech Republic . October 19-21, 2020 . Prague : Czech Technical University in Prague , 2020, pp. 439-443. ISSN 2376-5631. ISBN 978-1-7281-9479-0. In the database: IEEE: 9269192; DOI: 10.1109 / EPE51172.2020.9269192. Project: 1/0640/17 113.
  • [4] Bayati , N .; Hajizadeh , A .; Soltani , M. Protection in DC microgrids : A comparative review . IET Smart Grid 2018 , 1 , 66–75. [ CrossRef ]
  • [5] Fuhaid Basheer , Mohamed I. El- sayed , El- Saied Othman , Improving Dynamic Stability of Power Systems by Using AVR, Power System Stabilizer , International Journal of Electrical Engineering and Technology , 10 (2), 2019, pp . 36-47 doi : https://www.doi.org/10.34218/IJEET.10.2.2019.004
  • [6] Nikoofekr , I., & Sadeh , J. (2018). Determining secondary ACR extinction time for single-pole auto- reclosing based on harmonic signatures . Electric Power Systems ReseACRh , 163, 211–225. doi: 10.1016 / j.epsr.2018.06.013
  • [7] ZQ Bo, RK Aggarwal , AT Johns , BH Zhang , YZ Ge, New concept in transmission line reclosure using high frequency fault transients , IEE Proc . Gener . Transm . Distr . 144 (1997) 351-355
  • [8] ZQ Bo, RK Aggarwal , AT Johns , A novel technique to distinguish between transient and permanent faults based on the detection of current transients , International Conference on APSCOM 1 (1997) 216–220
  • [9] A. Sang -Pil, K. Chul-Hwan , RK Aggarwal , AT Johns , An alternative approach to adaptive single pole auto- reclosing inhigh voltage transmission systems based on variable dead time control , IEEE Trans . Power Deliv . 16 (2001) 676-686.
  • [10] ME Hamedani Golshan , N. Golbon , Detecting secondary ACR extinction time by analyzing low frequency components of faulted phase voltage or sound phase current waveforms , Electr . Eng . 88 (2004) 141-148.
  • [11] NI Elkalashy , HA Darwish , AI Taalab , MA Izzularab , An adaptive single pole autoreclosure based on zero sequence power , Electr . Power Syst . Res . 77 (2007) 438–446
  • [12] ZM Radojevic , JR Shin , New digital algorithm for adaptive reclosing based on the calculation of the faulted phase voltagetotal harmonic distortion factor , IEEE Trans . Power Deliv . 22 (2007) 37-41.
  • [13] H. Khorashadi-Zadeh , Z. Li , Design of a novel phasor measurement unit-based transmission line auto reclosing scheme , IET Gener . Transm . Distrib . 5 (2011) 806–813.
  • [14] GE. YZ. SUI. FH. and XIAO. Y .: ' Prediction mcthods for preventing single- phase reclosing on permanent fault ', IEEE 7iuns. Poii: ci . Ucliv ., 1989, 4, (l), pp . 114-121 AGGARWAL,ILK.,
  • [15] JOHNS, AT, SONG, YH. DUNN, IZ.W., and FITTON, DS: ' Neural-network based adaptive single-pole autoreclosure technique for EHV transmission systems ', IEE Proc .- Gerier . Trunsnz . Dktrih ., 1994, 141, (2)
  • [16] Heo , JY, Kim, CH & Aggarwal , RK 2012, Development of adaptive autoreclosure algorithm in transmission lines . at the11th International Conference on Developments in Power Systems Protection , 2012. DPSP 2012. IET, 11th International Conference on Developments in Power Systems Protection , 2012, DPSP 2012, Birmingham, UK United Kingdom , 22/04/12. https://doi.org/10.1049/cp.2012.0098
  • [17] SP Ahn , CH Kim, RK Aggarwal , AT Johns , " An AlternativeApproach to Adaptive Single Pole AutoReclosing in High Voltage Transmission Systems Based on Variable Dead Time Control ", IEEE Trans . On Power Delivery , vol . 16, no. 4, pp . 676-686 , Oct. 2001.
  • [18] RK Aggarwal , YH Song, AT Johns , “ Adaptive Three-phase Autoreclosure for Double-circuit Transmission Systems using Neural Networks ", in Proc . 1993 IEE Advances in Power System Control , Operation and Managements Conf ., Pp . 389-392, 1993
  • [19] Griche, I. (2019). Parallel fuzzy logic and PI controller for transient stability and voltage regulation of power system including wind turbine. Przegląd Elektrotechniczny, 1(9), 53–58. https://doi.org/10.15199/48.2019.09.10
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b9a2c7ba-b019-4dea-9eb1-14dc147985e2
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.