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Synteza układu sterowania prosumenckiego źródła napięcia w sieci rozdzielczej

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Języki publikacji
PL
Abstrakty
Słowa kluczowe
Wydawca
Rocznik
Tom
Strony
51--59
Opis fizyczny
Bibliogr. 18 poz., tab., wykr.
Twórcy
  • Akademia Górniczo-Hutnicza w Krakowie, Wydział Elektrotechniki, Automatyki, Informatyki i Inżynierii Biomedycznej, Katedra Energoelektroniki i Automatyki Systemów Przetwarzania Energii
  • Akademia Górniczo-Hutnicza w Krakowie, Wydział Elektrotechniki, Automatyki, Informatyki i Inżynierii Biomedycznej, Katedra Energoelektroniki i Automatyki Systemów Przetwarzania Energii
Bibliografia
  • [1] E.T. Jauch, Maximizing Automatic Reverse Power Operations with LTC Transformers and Regulators, IEEE Power Engineering Society Inaugural Conference and Exposition in Africa 2005, Durban 2005, s. 449- 454.
  • [2] A. Al-Riyami, K. Burt, G. Manhangwe, P. Pretlove, S. Georgiopoulos, An Investigation into Alternatives to Directional Overcurrent Protection on Grid Transformers to Improve the Network Capacity to Accommodate Reverse Power Flow, 12th I ET International Conference on Developments in Power System Protection, Copenhagen 2014, s. 1-6.
  • [3] J. Faiz, B.M. Ebrahimi, M. Ghofrani, Mixed Derating of Distribution Transformers Under Unbalanced Supply Voltage and Nonlinear Load Conditions Using TSFEM, "IEEE Transactions on Power Delivery" 2010, nr 25 (2), s. 780-789.
  • [4] A.W. Kelley, S.W. Edwards, J.P. Rhode, M.E. Baran, Transformer Derating for Harmonic Currents: A Wide-Band Measurement Approach for Energized Transformers, "IEEE Transactions on Industry Applications" 1995, nr 35 (6), s. 1450-1457.
  • [5] M.A.S. Masoum, P.S. Moses, A.S. Masoum, Derating of Asymmetric Three-Phase Transformers Serving Unbalanced Nonlinear Loads, "Transactions on Power Delivery" 2008, nr23 (4), s. 2033-2041.
  • [6] F. Aboura, S.A. Touhami, A.I. Zama, R. Tahmi, O. Touhami, K. Boughrara, Dynamical Modeling and Analysis of Asymmetric Unbalanced Three-Phase Transformers, 2015 Intl. Aegean Conference on Electrical Machines & Power Electronics (ACEMP), 2015 Intl. Conference on Optimization of Electrical & Electronic Equipment (OPTIM) & 2015 Intl. Symposium on Advanced Electromechanical Motion Systems (ELEC- TROMOTION) 2015, s. 623-629.
  • [7] A. Zecchino, M. Marinelli, Junjie Hu, M. Coppo, R. Turri, Voltage Control for Unbalanced Low Voltage Grids Using a Decoupled-Phase On-Load Tap-Changer Transformer and Photovoltaic Inverters, 50th International Universities Power Engineering Conference (UPEC), Staffordshire 2015, s. 1-6.
  • [8] M. Razmkhah, М. Reza Azizian, H.M. Kojabadi, Photovoltaic Systems Based on Power Electronic Transformer with Maximum Power Tracking Capability, 22nd Electrical Power Distribution Conference, Semnan 2017, s. 74-79.
  • [9] R. Chattopadhyay, S. Bhattacharya, Modular Isolated DC-DC Converter with Multi-Limb Transformer for Interfacing of Renewable Energy Sources, IEEE Applied Power Electronics Conference and Exposition (APEC), Charlotte 2015, s. 3039-3046.
  • [10] S. Hazra, S. Bhattacharya, Ch. Chakraborty, A Novel Control Principle fora High Frequency Transformer Based Multiport Converter for Integration of Renewable Energy Sources, IECON 2013 - 39th Annual Con¬ference of the IEEE Industrial Electronics Society, Vienna 2013, s. 7984-7989.
  • [11] S. Ouyang, J. Liu, X. Wang, S. Song, X. Hou, Comparison of Four Power Electronic Transformer Topologies on Unbalanced Load Correction Capacity, IEEE Energy Conversion Congress and Exposition (ECCE), Montreal 2015, s. 3702-3709.
  • [12] M.V. Athul, P.K. Preetha, P.S. Chandramohanan Nair, Analysis of Star-Star Delta_Uti'lized Transformer under Balanced and Unbalanced Load Conditions, IEEE Industry Applications Society Annual Meeting, Dallas 2015, s. 1-6.
  • [13] Z.-X. Zou, G. Buticchi, M. Liserre, Analysis and Stabilization of a Smart Transformer-Fed Grid, "IEEE Transactions on Industrial Electronics" 2017, nr PP (99), s. 1-1.
  • [14] N. Bottrell, M. Prodanovic, T.C. Green, Dynamic Stability of a Microgrid with an Active Load, "IEEE Transactions on Power Electronics" 2013, nr 28 (11), s. 5107-5119.
  • [15] A.A. Rockhill, M. Liserre, R. Teodorescu, P. Rodriguez, Grid-Filter Design fora Multimegawatt Medium-Voltage Voltage-Source Inverter, "IEEE Transactions on Industrial Electronics" 2011, nr 58 (4), s. 1205- 1217.
  • [16] Ch. Zhang, Y. Li, J. Li, Q. Yang, J. Zhu, Measurement of Three-Dimensional Magnetic Properties with Feedback Control and Harmonic Compensation, "IEEE Transactions on Industrial Electronics" 2017, nr 64 (3), s. 2476-2485.
  • [17] Q. Tang, Z. Wang, P.I. Anderson, P. Jarman, A.J. Moses, Approximation and Prediction of AC Magnetization Curves for Power Transformer Core Analysis, "IEEE Transactions on Magnetics" 2015, nr 51 (5), s. 1-8.
  • [18] T. Drabek, P. Dybowski, Control of Prosumer Energy Sources in Power Grid Feeded by Three-Phase Distribution Transformer, 15th Selected Problems of Electrical Engineering and Electronics (WZEE), Zakopa¬ne 2019.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-12e24e3b-d2a4-421e-bd56-1ebd99559aeb
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