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D. Lu and X. Zhang

-machine power systems with SMES units", Automatica 42 (7), 1121-1132 (2006). V. Azbe and R. Mihalic, "The control strategy for an IPFC based on the energy function", IEEE Trans. Power Syst. 22 (4), 1662-1669 (2008). Y. Zou, M. Yin, and H. Chiang, "Theoretical foundation of the controlling UEP method for direct transient-stability analysis of network-preserving power system models", IEEE Trans. Circ. Syst. I: Fundam. Theory Appl. 50 (10), 1324-1336 (2003). D. Fang and Y. Qin, "A new trajectory

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Amir Abbaszadeh, Mehrdad Abedi and Ali Doustmohammadi

arrester due to station service transformer ferroresonance, International Conference on Power Systems Transients (IPST), Lyon, France (2007). [10] Jazebi S., Farazmand A., Murali P., A Comparative Study on π and T Equivalent Models for the Analysis of Transformer Ferroresonance, IEEE Transactions on Power Delivery, 2013, vol. 1, no. 28 pp. 526528 (2013). [11] Viena L., Moreira A., Ferreira R., de Castro A., de Jesus N., Analysis and application of transformer models in the ATP program for the study of ferroresonance, Transmission and

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Daniel Guillén, Gina Idárraga-Ospina and Camilo Cortes

R eferences [1] da SILVA, M.—COURY, D. V.—OLESKOVICZ, M.—SEGATTO, E. C. : Combined Solution for Fault Location in Three Terminal Lines based on Wavelet Transforms, IET Gener. Transm. Distrib. 4 No. 1 (Jan 2010), 94–103. [2] OSMAN, A. H.—MALIK, O. P. : Experimental Test Results for a Parallel Transmission Lines Protection Scheme using Wavelet Transform, IEE Proc.-Gener. Transm. Distrib. 151 No. 6 (Nov 2004), 713–720. [3] ROBERTSON, D. C.—CAMPS, O. I.—MAYER, J. S.—GISH, W. B. : Wavelets and Electromagnetic Power System Transients, IEEE Trans

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Piotr Szulawski and Włodzimierz Koczara

PEDES, 2010. [4] SHARMA P., HOFF B., RAMKESH M., ANN based reactive power control of an autonomous winddiesel hybrid power plant using PMIG and SG, Conf. Proc. PESTSE, 2014. [5] LEE D.-H., KIM T.-H., AHN J.-W., Control of digital AVR in stand alone generator for improved dynamic characteristics, Conf. Proc. Power Electronics Specialists Conf. PESC, 2008. [6] CHAKRABORTY A., MUSUNURI S.K., SRIVASTAVA A.K., KONDABATHINI A.K., Integrating STATCOM and Battery Energy Storage System for Power System Transient Stability: A

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Piotr Oramus, Tomasz Chmielewski, Tomasz Kuczek, Wojciech Piasecki and Marcin Szewczyk

-Dependent Transmission Lines in Electromagnetic Transient Simulations . IEEE Transactions on Power Apparatus and Systems PAS-101(1): 147-157 (1982). [21] CIGRE WG 33.0: Guide to procedure for estimating the lightning performance of transmission line. (1991). [22] ABB technical data sheet: http://www02.abb.com/global/gad/gad02181.nsf/0/a8a42f36692365dcc1257a62003101ce/$file/XLPE+Land+Cable+Systems+-+User%C2%B4s+Guide.pdf , accessed October (2014). [23] IEEE Std C37.011™-2005: Application Guide for Transient Recovery Voltage for AC High-Voltage Circuit Breakers.

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Łukasz Nogal and Jan Machowski

). Adamiak M. G., Apostolov A. P., Begovic M. M. et al. Wide Area Protection-Technology and Infrastructures. IEEE Trans. Power Delivery 21: 601-609 (2006). Pai M. A. Energy Function Analysis For Power System Stability. Kluwer Academic Publishers (1989). Pavella M., Ernst D., Ruiz-Vega D. Transient Stability of Power Systems. A unified Approach to Assessment and Control , Kluwer's Power Electronics and Power System Series, SECS581 0-7923-7963-2 (2000). Nogal L. Control of series FACTS

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Hamid Reza Koofigar and Ghader Isazadeh

References [1] Kundur P., Power System Stability and Control , McGraw-Hill, New York (1994). [2] Hemmati R., Koofigar H.R., Ataei M., Optimal adaptive controller based on STATCOM and UPFC , Journal of Electrical Engineering and Technology, vol. 11, no. 5, pp. 1057-1062 (2016). [3] Hingorani N.G., Gyugyi L., Understanding FACTS: Concepts and Technology of Flexible AC Transmission Systems , IEEE Press, New York (2000). [4] Marjanain A., Jafari E., Barati H., Designing of a TEF-based neuro-fuzzy controller for IPFC to improve the

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Archives of Electrical Engineering

The Journal of Polish Academy of Sciences

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Lauri Kütt, Muhammad Shafiq, Matti Lehtonen, Heigo Mõlder and Jaan Järvik

. Lehtonen, J. Kilter, "Air-core inductive current sensor for fast transients measurements in distribution networks", 2012 Electric Power Quality and Supply Reliability Conference (PQ2012), 4 p. [17] L. Kütt, M. Shafiq, M. Lehtonen, H. Mõlder, J. Järvik, “Sensor Resonance and its Influence on the Measurement Results of Fast Transients”, 2013 International Conference on Power Systems Transients (IPST2013), 7 p. [18] N. Breners, N. Skobeleva, “Mathematical Models for Choice of Measures on Functioning Reliability Increase of Power Transformers

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Yurii Bumai, Aleh Vaskou and Valerii Kononenko

Rev. , 46(2), 200-213. Ryabtsev, G. I., Kuzmin, A. N., Ges, J. A., Gorban, Yu.P., Soukieh, M., Konyaev, V. P., Stręk, W. (1995). Thermal properties of high-power InGaAs/AlGaAs laser diodes. J. Appl. Spectrosc. , 62(5), 900-902. Bumai, Y. A., Vaskou, A. S., Domanevskii, D. S. (2007). Thermal processes in high-intensity InGaN/GaN light-emitting diodes. Book of papers, 6 th Belarussian-Russian Workshop. Semiconductor Lasers and Systems . Minsk, 108-112. Hulett, J. Kelly, C. (2008