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Układy HVDC we współczesnych systemach elektroenergetycznych

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Warianty tytułu
EN
HVDC transmission systems in modern power systems
Języki publikacji
PL
Abstrakty
PL
Układy przesyłowe HVDC, ze względu na oferowane właściwości, stają się coraz bardziej popularne we współczesnych systemach elektroenergetycznych. W artykule przedstawiono spotykane obecnie rozwiązania układów przesyłowych wysokiego napięcia prądu stałego. Omówiono cechy przesyłu prądem stałym, występujące topologie przekształtników oraz zwrócono uwagę na prowadzone aktualnie prace badawcze, dotyczące m. in. struktur złożonych. Przedstawiono również stan obecnego unormowania i ustandaryzowania omawianych systemów przesyłowych.
EN
The paper describes an overview of High Voltage Direct Current transmission in modern power systems. In the article there are presented: characteristic of high voltage DC transmission, power converter designs, their comparison and current research related to aspects of multiple HVDC links. Furthermore, achieved levels of normalization and standardization of technical and functional requirements relating to these transmission systems are described.
Słowa kluczowe
Rocznik
Strony
1--10
Opis fizyczny
Bibliogr. 63 poz., rys., tab., wykr.
Twórcy
  • Politechnika Warszawska, Instytut Elektroenergetyki, ul. Plac Politechniki 1, 00- 661 Warszawa
autor
  • Politechnika Warszawska, Instytut Elektroenergetyki, ul. Plac Politechniki 1, 00- 661 Warszawa
Bibliografia
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  • [5] Błajszczak G., Wasiluk-Hassa M., Malinowski M., Kaźmierkowski M. P., Jasiński M., Współczesne systemy przesyłu energii prądem stałym HVDC, Elektroenergetyka (7), 2011
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  • [9] Kłos M., Rosłaniec Ł., Paska J., Pawlak K., Stacje przekształtnikowe HVDC umożliwiające integrację morskich farm wiatrowych z systemem elektroenergetycznym, APE’15
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  • [16] Bahrmann M. P., HVDC Transmission Overview, IEEE Transmission and Distribution Conference and Exposition, 2008, 1-7
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  • [21] Flourentzou N. [et al.], VSC-Based HVDC Power Transmission Systems: An Overview, IEEE Transactions on Power Electronics, 24 (2009), n. 3, 592-602
  • [22] Petersson A., Edris A., Dynamic performance of the Eagle Pass back-to-back HVDC Light tie, 7th International Conference on AC-DC Power Transmission, 2001, 220-225
  • [23] Bresesti P., Kling W.L., Hendriks R.L., Vailati R., HVDC Connection of Offshore Wind Farms to the Transmission System, IEEE Transactions on Energy Conversion, 22 (2007), n. 1, 37-43
  • [24] Kouro S., Malinowski M., Gopakumar K., Pou J., Franquelo L.G., Bin Wu, Rodriguez J., Perez M.A., Leon J.I. Recent Advances and Industrial Applications of Multilevel Converters, IEEE Transactions on Industrial Electronics, 57 (2010), n. 8, 2553 - 2580
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  • [26] Geetha R.S., et al., Converter Topologies in VSC-HVDC Systems-an overview, International Journal of Engineering Research & Technology, 3 (2014), n. 8
  • [27] Adam G.P.[et al], Comparision between Two VSC-HVDC Transmission Systems Technologies: Modular and Neutral Point Clamped Multilevel Converter, 35th Annual Conference of the IEEE Industrial Electronics Society and ICELIE, 2009
  • [28] Shah S., Hassan R., Sun J., HVDC Transmission System Architectures and Control – A Review, IEEE 14th Workshop on Control and Modeling for Power Electronics (COMPEL), 2013, 1-8
  • [29] Rudervall R, Charpentier J.P., Raghuveer S., High Voltage Direct Current (HVDC) Transmission Systems Technology Review Paper, Energy Week, 2000
  • [30] Balzer G., Muller H., Capacitor commutated converters for high power HVDC transmission, Seventh International Conference on AC-DC Power Transmission (Conf. Publ. No. 485), 2001, 60-65
  • [31] http://www.europacable.com/home/energy-cables/hvdccables.html
  • [32] Gustafsson A., et al., New developments within the area of extruded HVDC cables 11th IET International Conference on AC and DC Power Transmission, (2015), 1-5
  • [33] Andersson G., Fischer P., Liss G., HVDC Multi-Infeed Performance, www.abb.com
  • [34] Lips H.P., Aspects of Multiple Infeed of HVDC Inverter Stations Into a Common A.C. system, IEEE Trans. On Power Apparatus and Systems, 92(1973), n. 2., 775-779
  • [35] Zhou C., Xu Z., Study on commutation failure of multi-infeed HVDC system. PowerCon 2002. International Conference on Power System Technology, 4 (2002), 2462 - 2466
  • [36] Shao Y., Tang Y., Voltage stability analysis of multi-infeed HVDC systems using small signal stability assessment, IEEE PES Transmission and Distribution Conference and Exposition, 2010, 1-6
  • [37] Yan L., Zhe C., A Flexible Power Method of VSC-HVDC Link for the Enhancement of Effective Short-Circuit Ratio in a Hybrid Multi-Infeed HVDC System, IEEE Transactions on Power Systems, 28(2012), n. 2, 1568-1581
  • [38] Shilpa G., Manohar P., Hybrid HVDC System for Multi-infeed Applications, International Conference on Emerging Trends in Communication, Control, Signal Processing & Computing Applications (C2SPCA), 2013, 1-5
  • [39] Liu Y., Chen Z., Voltage Sensitivity Based Reactive Power Control on VSC-HVDC in A Wind Farm Connected Hybrid MultiInfeed HVDC System, IEEE PowerTech, 2013, 1-6
  • [40] Guo C., Zhao C., Supply of an Entirely Passive AC Network Through a Double-Infeed HVDC System, IEEE Transactions on Power Electronics, 25 (2010), n. 11, 2835-2841
  • [41] Chunyi G., Zhang Y., Gole A., Zhao C., Analysis of Dual- Infeed HVDC With LCC–HVDC and VSC–HVDC, IEEE Transactions on Power Delivery, 27 (2012), n. 3, 1529-1537
  • [42] Chunyi G., Analysis of dual-infeed HVDC with LCC inverter and VSC rectifier, IEEE PES General Meeting Conference & Exposition, 2014, 1-4
  • [43] Kotb O., Sood V.K., A Hybrid HVDC Transmission System Supplying a Passive Load, IEEE Electric Power and Energy Conference (EPEC), 2010, 1-5
  • [44] Mossadegh N., Aggarwal R.K., Management and Viability of Multi-Terminal HVDC for Offshore Renewable Energy Networking, 45th International Universities Power Engineering Conference (UPEC), 2010, 1-6
  • [45] Padiyar K. R., HVDC Power Transmission Systems: Technology and System Interactions, New Age International, 1990
  • [46] HVDC VSC (HVDC light) transmission – operating experiences, www.abb.com
  • [47] VSC-HVDC Control and Application in Meshed AC Networks, www.abb.com
  • [48] Arrillaga J, High Voltage Direct Current Transmission, The institution of Electrical Engineering, 1998
  • [49] Zhu J., et al., Inertia Emulation Control Strategy for VSC-HVDC Transmission Systems, IEEE Trans on Power Systems, 28 (2012), n. 2, 1277–1287
  • [50] Yang X, et al., The Effect of HVDC Inverter on Subsynchronous Oscillation and Damping Controller Design, 2005 IEEE/PES Transmission and Distribution Conference and Exhibition: Asia and Pacific, 1-6
  • [51] Changchun Z., Zheng X., Damping Analysis of Subsynchronous Oscillation Caused by HVDC, 2003 IEEE PES Transmission and Distribution Conference and Exposition, 30-34
  • [52] Fischer de Toledo P., Angquist L. Nee H.-P., Frequencydomain modelling of sub-synchronous torsional interaction of synchronous machines and a high voltage direct current transmission link with line-commutated converters, IET Generation, Transmission & Distribution, 4 (2010), n. 3, 418-431
  • [53] Ki-Kim C, et al., HVDC Transmission: Power Conversion Applications in Power Systems, Wiley-IEEE Press, 2009
  • [54] Ying Jiang H., et al. Improvement of Subsynchronous Torsional Damping Using VSC HVDC, 2002 International Conference on Power System Technology Proceedings, PowerCon 2002, 4 (2002), 2617-2621
  • [55] AC/DC Backing up AC grids with DC technology, www.abb.com
  • [56] Cigre HVDC Grid Feasibility Study Working Group B4.52, TB 533, 2013
  • [57] Technical Guidelines for Radial HVDC Networks, PD CLC/TR 50609, 2014
  • [58] http://www.iec.ch/
  • [59] ENTSO-E Draft Network Code on High Voltage Direct Current Connections and DC-connected Power Park Modules, www.entsoe.eu
  • [60] Requirements for Offshore Grid Connections in the Grid of TenneT TSO GmbH, www.tennet.eu
  • [61] Review of Transmission System Security and Planning Standards - Appendix 1 SQSS (NI), www.soni.ltd.uk/
  • [62] National Electricity Transmission System Security and Quality of Supply Standard, www2.nationalgrid.com
  • [63] Appendix 1 Technical Requirements For Undersea Cable System Hawaiian Electric Company, Inc. Revised Draft September 28, 2012, www.mauielectric.com
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-31a7842e-81f5-4472-9813-3bac7fb7c864
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