Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 21
Page No. 9218 - 9225

PID and Hysteresis Current Control for Induction Generator Coupled with Direct Current Motor Fed by Solar Energy System

Authors : OmarTalal Mahmood

References

Alghuwainem, S.M., 1996. Speed control of a PV powered DC motor driving a Self-excited 3-phase induction generator for maximum utilization efficiency. IEEE. Trans. Energy Convers., 11: 768-773.
CrossRef  |  Direct Link  |  

Alsammak, A.N. and M.F. Al-Kababji, 2009. Reactive power compensation using Fuzzy Gain Scheduling (FGS) based PID controller of synchronous machine. AL. Rafdain Eng. J., 17: 1-24.
Direct Link  |  

Ashish, K.S., D. Ritesh and S. Dipesh, 2015. Development and simulation of adaptive Neuro Fuzzy controller based pitch angle controlled DFIG system for wind turbine. Intl. J. Recent Innovation Trends Comput. Commun., 3: 3575-3581.
Direct Link  |  

Bany, J., 1978. Analysis of a direct coupling dc motor and a photovoltaic converter. Energy Convers., 18: 73-79.
Direct Link  |  

Feraga, C.E. and A. Bouldjedri, 2016. Performance of a photovoltaic pumping system driven by a single phase induction motor connected to a photovoltaic generator. Automatika, 57: 163-172.
Direct Link  |  

Kale, M. and E. OZDEMiR, 2015. A new hysteresis band current control technique for a shunt active filter. Turk. J. Electr. Eng. Comput. Sci., 23: 654-665.
CrossRef  |  Direct Link  |  

Kavitha, B., S. Karthikeyan and B. Iswarya, 2004. Design of solar PV water pumping system using BLDC drive using sensorless method. Intl. J. Eng. Sci., 3: 41-46.
Direct Link  |  

Le-Huy, H. and G. Sybille, 2014. Transient analysis of a linear circuit. Universite Laval, Quebec, Canada.

Nemmour, A.L., L. Louze, A. Khezzar and M. Boucherma, 2007. Terminal voltage control of variable speed induction generator driven by a wind turbine supplying a DC load. Proceedings of the International Conference on Electrical Machines and Power Electronicsonal Aegean, September 10-12, 2007, IEEE, Bodrum, Turkey, ISBN:978-1-4244-0890-0, pp: 393-397.

Nishida, K., T. Ahmed and M. Nakaoka, 2006. A novel induction generator system using Bi‐directional PWM converter for Small‐scale power applications. IEEJ. Trans. Electr. Electron. Eng., 1: 66-79.
Direct Link  |  

Ors, M., 2008. Voltage control of a Self-excited induction generator. Proceedings of the 2008 IEEE International Conference on Automation, Quality and Testing, Robotics (AQTR) Vol. 3, October 12-15, 2008, IEEE, St. Louis, Missouri, USA., pp: 281-286.

Praveen, M. and M.R.R. Mohana, 2014. A photovoltaic cell based DC-DC converter for DC motor. Intl. J. Adv. Res. Electr. Electron. Instrum. Eng., 3: 13727-13732.
Direct Link  |  

Rajesh, R., A. Rahul, P. Mawle and R. Keswani, 2014. PV based chopper fed DC drive. Proceedings of the International Conference on Industrial Automation and Computing ICIAC, April 12-13, 2014, Jhulelal Institute of Technology, Lonara, Nagpur, India, pp: 11-16.

Rashid, M.H., 2001. Power Electronics Handbook. 1st Edn., Academic Press, USA., ISBN-13: 9780125816502, pp: 895-635.

Richard, C.D. and H.B. Robert, 2011. Modern Control Systems. 12th Edn., Prentice Hall, Upper Saddle River, New Jersey, USA., ISBN:9780136024583, Pages: 1082.

Syahputra, R. and I. Soesanti, 2016. DFIG control scheme of wind power using ANFIS method in electrical power grid system. Intl. J. Appl. Eng. Res., 11: 5256-5262.
Direct Link  |  

Tariq, M. and S. Yuvarajan, 2013. Simulink based modeling, analysis and simulation of self excited induction generator for use in remote areas. IU. J. Electr. Electron. Eng., 13: 1623-1628.
Direct Link  |  

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