References
[1]. W. D. Kellogg., M. H. Nehrir., G.Venkataramanan, and
V. Gerez, (1998). “Generation unit sizing and cost Analysis
for stand-alone wind, photovoltaic, and Hybrid wind/PV
systems,” IEEE Trans. Energy Conversion. Vol. 13,
pp.70–75.
[2]. S. Drouilhet., E. Muljadi., R. Holz., and V. Gevorgian,
“Optimizing small wind turbine Performance in battery
charging applications,” in NREL/TP-441-7808. Golden,
CO: National Renewable Energy Laboratory, 1995.
[3]. N. Yamamura., M. Ishida., and T. Hori, “A simple Wind
power generating system with permanent Magnet type
synchronous generator,” in Proc. IEEE Int. Conf. Power
Electronics Drive Systems, Vol. 2, Hong Kong, Jul. 27–29,
999, pp. 849– 854.
[4]. Mangesh (2005). “Analysis and design of LCL-T
resonant DC to DC converter”, IEEE trans. on IE.
[5] S.Arul Daniel and N. Ammasai Gounden (2004). “A
novel Hybrid Isolated Generating System based on PV Fed
Inverter assisted Wind-driven Induction Generators”. IEEE
Transaction on energy Conversion, pp 416- 422, Vol. 19,
No.2, June.
[6]. M. Arutchelvi and S. Arul Daniel, “Voltage Control of
autonomous hybrid generation scheme based on PV
array and wind-driven induction Generators”, Electric
power components and Systems, pp. 759-773, Vol.34,
No.7, July 2006.
[7]. M. Arutchelvi and S. Arul Daniel, (2007). “Composite
Controller for a hybrid power plant based on PV Array fed
wind- driven induction generator with Battery storage”,
International Journal of energy Research, pp.515-524
Vol.31, April .8.
[8]. Hamin Tao, A.M Hendix, (2008). “Three port triple half
Bridge DC to DC converter with zero voltage Switching”
IEEE Transaction on Power Electronics, pp 782-792.
[9]. S.H. Hosseni., R. Moradi, (2008). “A new active
snubber Cell for DC to DC converter”, IEEE Transaction on
Power Electronics, pp. 349-359.
[10]. P. Chandrasekhar., and S. Ramareddy (2009).
“Optimum Controlled Full Bridge LC resonant Converter
for Electrolyser Application”, Proceeding of the World
congress on Engineering and Computer Science pp.20-
22.