Integration of wind into running vehicles to meet its total energy demand

Md. Faruque Hossain1, Nowhin Fara2
1Department of Civil and Urban Engineering, New York University, 6 MetroTech Center, Brooklyn, NY 11201, USA
2Green Globe Technology, 4323 Colden Street 15L, Flushing, NY, 11355, USA

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Abdullah MA, Yatim AHM, Chee Wei T (2011) A study of maximum power point tracking algorithms for wind energy system. In: Proceedings of IEEE first conference on clean energy and technology (CET), pp 321–326

Beltran B, Benbouzid M, Ahmed-Ali T, Mangel H (2011) DFIG-based wind turbine robust control using high-order sliding modes and a high gain observer. IREMOS 4(3):1148–1155

Bhandari B, Poudel SR, Lee K-T, Ahn S-H (2014) Mathematical modeling of hybrid renewable energy system: a review on small hydro-solar-wind power generation. Int J Precis Eng Manuf Green Technol 1(2):157–173

Bianchi FD, De Battista H, Mantz RJ (2007) Wind turbine control systems. Advances in industrial control. Springer, London

Boutotbat M, Mokrani L, Machmoum M (2013) Control of a wind energy conversion system equipped by a DFIG for active power generation and power quality improvement. Renew Energy 50:378–386

Brekken TKA, Mohan N (2007) Control of a doubly fed induction wind generator under unbalanced grid voltage conditions. IEEE Trans Energy Convers 22(1):129–135

Dürr M, Cruden A, Gair S, McDonald JR (2006) Dynamic model of a lead acid battery for use in a domestic fuel cell system. J Power Sources 161(2):1400–1411

Eltamaly AM, Farh HM (2013) Maximum power extraction from wind energy system based on fuzzy logic control. Electr Power Syst Res 97:144–150

Eltamaly AM, Alolah AI, Abdel-Rahman MH (2011) Improved simulation strategy for DFIG in wind energy applications. IREMOS 4(2):525–532

E.W.E Association (2012) Wind directions-the European wind industry magazine, 31(1)

Faida H, Saadi J (2010) Modelling, control strategy of DFIG in a wind energy system and feasibility study of a wind farm in Morocco. IREMOS 3(6):1350–1362

Gaillard A, Poure P, Saadate S, Machmoum M (2009) Variable speed DFIG wind energy system for power generation and harmonic current mitigation. Renew Energy 34:1545–1553

Ghennam T, Berkouk EM, Francois B (2007) A vector hysteresis current control applied on three-level inverter Application to the active and reactive power control of doubly fed induction generator based wind turbine. IREE 2(2):250–259

Gopal Sharma K, Bhargava A, Gajrani K (2013) Stability analysis of DFIG based wind turbines connected to electric grid. IREMOS 6(3):879–887

Grätzel M (2001) Photoelectrochemical cells. Nature 414:338–344

Gupta N, Singh SP, Dubey SP, Palwalia DK (2011) Fuzzy logic controlled three-phase three-wired shunt active power filter for power quality improvement. IREE 6(3):1118–1129

Heier S (1998) Wind energy conversion systems. Wiley, New York

Hossain F (2016a) In situ geothermal energy technology: an approach for building cleaner and greener environment. J Ecol Eng 17:49–55

Hossain F (2016b) Solar energy integration into advanced building design for meeting energy demand and environment problem. J Energy Res 17:49–55

Junyent-Ferré A, Gomis-bellmunt O, Sumper A, Sala M, Mata M (2010) Modeling and control of the doubly fed induction generator wind turbine. Simul Model Pract Theory 18:1365–1381

Kamal E, Koutb M, Sobaih AA, Abozalam B (2010) An intelligent maximum power extraction algorithm for hybrid wind-diesel-storage system. Int J Electr Power Energy Syst 32(3):170–177

Kamal E, Aitouche A, Ghorbani R, Bayart M (2012) Robust fuzzy fault tolerant control of wind energy conversion systems subject to sensor faults. IEEE Trans Sustain Energy 3(2):231–241

Kamal E, Oueidat M, Aitouch A, Ghorbani R (2013) Robust scheduler fuzzy controller of DFIG wind energy systems. IEEE Trans Sustain Energy 4(3):706–715

Kazemi MV, Moradi M, Kazemi RV (2012) Minimization of powers ripple of direct power controlled DFIG by fuzzy controller and improved discrete space vector modulation. Electr Power Syst Res 89:23–30

Kerrouche KD, Mezouar A, Boumediene L, Belgacem K (2014) Modeling and optimum power control based DFIG wind energy conversion system. IREE 9(1):174–185

Li S, Haskew TA, Jackson J (2010) Integrated power characteristic study of DFIG and its frequency converter in wind power generation. Renew Energy 35:42–51

Mamdani EH, Assilina S (1975) An experiment in linguistic synthesises with a fuzzy logic controller. Int J Man Mach Stud 7:1–13

Pichan M, Rastegar H, Monfared M (2013) Two fuzzy-based direct power control strategies for doubly-fed induction generators in wind energy conversion systems. Energy 51:154–162

Publishing O, Agency IE (2010) World energy outlook. Organisation for Economic Co-operation and Development, Paris

Robyns B, Francois B, Degobert P, Hautier JP (2012) Vector control of induction machines. Springer, London

Slootweg JG (2005) Reduced order modeling of wind turbines. Wind power in power systems. Wiley, pp 555–585

Stieber M (2008) Wind energy system for electric power generation. Springer, Berlin

Takagi T, Sugeno M (1985) Fuzzy identification of systems and its applications to modelling and control. IEEE Trans Syst Man Cybern 15(1):116–132

Tazil M, Kumar V, Bansal RC, Kong S, Dong ZY, Freitas W et al (2010) Three-phase doubly fed induction generators; an overview. IET J Electr Power Appl 4:75–89

Tsourakisa G, Nomikosb BM, Vournasa CD (2009) Effect of wind parks with doubly fed asynchronous generators on small-signal stability. Electr Power Syst Res 79:190–200

Vieira JPA, Nunes MVA, Bezerra UH, Barra W Jr (2007) New fuzzy control strategies applied to the DFIG converter in wind generation systems. IEEE Trans Am Lat 5(3):142–149

Wang L, Truong D-N (2013a) Stability enhancement of DFIG-based offshore wind farm fed to a multi-machine system using a STATCOM. IEEE Trans Power Syst 28(3):2882–2889

Wang L, Truong D-N (2013b) Stability enhancement of a power system with a PMSG-based and a DFIG-based off shore wind farm using a SVC with an adaptive-network-based fuzzy inference system. IEEE Trans Power Syst 60(7):2799–2807

Wang Z, Sun Y, Li G, Ooi BT (2010) Magnitude and frequency control of grid-connected doubly fed induction generator based in synchronized model for Wind power generation. IET J Renew Power Gen 4:232–241

Watanakul N (2012) An application of wind turbine generator on hybrid power conditioner to improve power quality. IREE 7(5):5487–5495

Zerikat M, Chekroun S, Mechernene A (2010) Development and implementation of high-performance variable structure tracking for induction motor using fuzzy-logic controller. IREE 5(1):160–166

Zin AABM, Mahmoud Pesaran HA, Khairuddin AB, Jahanshaloo L, Shariatu O (2013) An overview on doubly fed induction generators’ controls and contributions to wind based electricity generation. Renew Sustain Energy Rev 27:692–708