Stability improvement of power systems connected with developed wind farms using SSSC controller
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Noureldeen, Rihan M, Hasanin. Stability improvement of fixed speed induction generator wind farm using STATCOM during different fault locations and durations. Ain Shams Eng J 2011;2(1):1–10.
Gounder, 2016, Enhancement of transient stability of distribution system with SCIG and DFIG based wind farms using STATCOM, IET Renew Power Gener, 10, 1171, 10.1049/iet-rpg.2016.0022
Gautam, 2009, Impact of increased penetration of DFIG-based wind turbine generators on transient and small signal stability of power systems, IEEE Trans Power Syst, 24, 1426, 10.1109/TPWRS.2009.2021234
Rashad, 2014, Modeling and investigation of Gulf El-Zayt wind farm for stability studying during extreme gust wind occurrence, Ain Shams Eng J, 5, 137, 10.1016/j.asej.2013.09.011
Fernandez, 2008, Aggregated dynamic model for wind farms with doubly fed induction generator wind turbines, Renewable Energy, 33, 129, 10.1016/j.renene.2007.01.010
Ledesma, 2003, Transient stability of a fixed speed wind farm, Renewable Energy, 28, 1341, 10.1016/S0960-1481(02)00251-3
Ahsan, 2016, Dynamic compensation of real and reactive power in wind farms using STATCOM, Perspect Sci, 8, 519, 10.1016/j.pisc.2016.06.008
Hossain, 2011, Robust STATCOM control for the stabilisation of fixed-speed wind turbines during low voltages, Renewable Energy, 36, 2897, 10.1016/j.renene.2011.04.010
Ramirez, 2012, Use of STATCOM in wind farms with fixed-speed generators for grid code compliance, Renewable Energy, 37, 202, 10.1016/j.renene.2011.06.018
Laouer, 2014, STATCOM and Capacitor Banks in a fixed-speed wind farm, Energy Proc, 50, 882, 10.1016/j.egypro.2014.06.107
Heydari-doostabad H, Khalghani MR, Khooban MH. A novel control system design to improve LVRT capability of fixed speed wind turbines using STATCOM in presence of voltage fault. Int J Electr Power Energy Syst 2016;77:280–6.
Boubekeur, 2013, Application of STATCOM to increase transient stability of wind farm, Am J Electr Power Energy Syst, 2, 50, 10.11648/j.epes.20130202.14
Wessels, 2013, StatCom control at wind farms with fixed-speed induction generators under asymmetrical grid faults, IEEE Trans Industr Electron, 60, 2864, 10.1109/TIE.2012.2233694
Pereira, 2014, Comparative study of STATCOM and SVC performance on dynamic voltage collapse of an electric power system with wind generation, IEEE Latin Am Trans, 12, 138, 10.1109/TLA.2014.6749530
Mohammadpour, 2015, Low voltage ride-through enhancement of fixed-speed wind farms using series FACTS controllers, Sustain Energy Technol Assess, 9, 12
Ananth, 2016, Fault ride-through enhancement using an enhanced field oriented control technique for converters of grid connected DFIG and STATCOM for different types of faults, ISA Trans, 62, 2, 10.1016/j.isatra.2015.02.014
Ananth, 2017, Mitigation of voltage dip and power system oscillations damping using dual STATCOM for grid connected DFIG, Ain Shams Eng J, 8, 581, 10.1016/j.asej.2015.12.002
Masaud, 2012, A comparative study of the implementation of STATCOM and SVC on DFIG-based wind farm connected to a power system, IEEE power energy society general meeting, 1
Abobkr AH, El-Hawary M. Fault ride-through capability of doubly-fed induction generators based wind turbines. Electrical power and energy conference (EPEC); 2015. p. 8–15.
Wang, 2013, Stability enhancement of DFIG-based offshore wind farm fed to a multi-machine system using a STATCOM, IEEE Trans Power Syst, 28, 2882, 10.1109/TPWRS.2013.2248173
Masaud TM, Sen P. Study of the implementation of STATCOM on DFIG-based wind farm connected to a power system. IEEE PES innovative smart grid technologies (ISGT); 2012. p. 1–7.
Garg, 2013, Dynamic performance analysis of IG based wind farm with STATCOM and SVC in MATLAB/SIMULINK, Int J Comput Appl, 71
Fernandez, 2008, Comparative study on the performance of control systems for doubly fed induction generator (DFIG) wind turbines operating with power regulation, Energy, 33, 1438, 10.1016/j.energy.2008.05.006
Ananth DVN, Kumar GVN. Fault ride-through enhancement using an enhanced field oriented control technique for converters of grid connected DFIG and STATCOM for different types of faults. ISA Transactions 2016;62:2–18.
Rashad, 2011, Operation of hybrid wind farm based on SCIG and DFIG under gust wind speed, J Eng Sci Assiut Univ, 39, 637
Li, 2012, Aggregated models and transient performances of a mixed wind farm with different wind turbine generator systems, Electric Power Syst Res, 92, 1, 10.1016/j.epsr.2012.04.019
Rashad A, Noureldeen O, Abdelwahab MA. Behavior of mixed wind farm based on SCIG and DFIG during wind gust occurrence. 15th International middle east power systems conference. Egypt: Alexandria University 2012;23–25:1–8.
Fernandez, 2009, Equivalent models of wind farms by using aggregated wind turbines and equivalent winds, Energy Convers Manage, 50, 691, 10.1016/j.enconman.2008.10.005
Heier, 1998
Movahednasab, 2008, Modeling of a squirrel cage induction generator IEEE Electrical Machines and Systems International Conference, 4267
Li, 2004, Control of DFIG wind turbine with direct-current vector control configuration, IEEE Trans Sustain Energy, 3, 1, 10.1109/TSTE.2011.2167001
Simões, 2004
Krause PC, Wasynczuk O, Sudhoff SD. Analysis of electric machinery and drive systems. 2nd ed. IEEE; 2002.
Wind Turbine Induction Generator, Matlab/Simulink Help, SimPower-Systems Blocks.
Sen, 1998, SSSC-static synchronous series compensator: theory, modeling, and applications, IEEE Trans Power Deliv, 13, 241, 10.1109/61.660884
Jowder, 2005, Influence of mode of operation of the SSSC on the small disturbance and transient stability of a radial power system, IEEE Trans Power Syst, 20, 935, 10.1109/TPWRS.2005.846121
Kamel, 2015, Power flow control for transmission networks with implicit modeling of static synchronous series compensator, Int J Electr Power Energy Syst, 64, 911, 10.1016/j.ijepes.2014.08.013
MATLAB/Simulink Documentation, Available <http://www.mathworks.com>.
Vittal, 2010, A steady-state voltage stability analysis of power systems with high penetrations of wind, IEEE Trans Power Syst, 25, 433, 10.1109/TPWRS.2009.2031491
Zheng C, Kezunovic M. Distribution system voltage stability analysis with wind farms integration North American power symposium (NAPS); 2010. p. 1–6.
