Open Access Open Access  Restricted Access Subscription Access

Modeling and Control of Smart Grid Integration with Hybrid Energy Conversion System

Sonam Shrivastava, R K Saxena

Abstract


In this paper, we will study performance parameters, efficiency and system reliability of hybrid energy system as they are the key characteristics of smart grid. As world become more globalize energy demand increases day by day. So, to fulfill energy demand more sources of energy are required and now-a-day conventional energy source start depicting. Therefore, renewable energy sources are studied in this paper. This paper consists of hybrid Simulink model of solar and wind. In this paper dynamic behavior of hybrid system is observed. Solar model is comprises of solar photovoltaic model, maximum power point tracker system using perturb and observe algorithm. In wind turbine doubly fed induction generator, converter are used. This model is implemented using MATLAB/SIMULINK software package.  Solar irradiance and wind speed data is collected from weather department. Real time input is used for proper and controlled working of smart grid model.


Full Text:

PDF

References


Tekeshwar Prasad Sahu, T.V. Dixit, Ramesh Kumar. Simulation and analysis of perturb and observe MPPT algorithm for PV array using UK. Converter in Advance in Electronic and Electric Engineering. 2014; 4(2): 213–224p.

Habbati Bellia, Ramdani Youcef, Moulay Fatima. A detailed modeling of photovoltaic module using MATLAB in NRIAG. Journal of Astronomy and Geophysics. 2014.

Indrajeet Prasad. Smart grid technology: application and control. In International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering. 2014; 3(5).

Available at: https://en.wikipedia.org/wiki/MATLAB.

Available at: https://eosweb.larc.nasa.gov/cgi-bin/sse/retscreen.cgi?&email=rets@nrcan.gc.ca&step=1&p=&lat=22.7196&submit=submit&lon=75.8577.

J.C.H. Phang, D.S.H. Chan, J.R. Philips. Accurate analytical method for the extraction of solar cell model parameter. IEEE Electronics Letters. 1984; 20: 406–408p.

M.G. Villalva, J.R. Gazoli, E.R. Filho. Comprehensive approach to modeling and simulation of photovoltaic arrays. IEEE Transactions on Power Electronics. 2009; 24: 1198–1208p.

H. De Battista, R.J. Mantz, F. Garelli. Power conditioning for a wind-hydrogen energy system. Journal of Power Sources. 2006; 155: 478–486p.

E. Muljadi, C.P. Butterfield. Pitch-controlled variable-speed wind turbine generation. IEEE Trans. Industry Appl. 2001; 37: 240–246p.

Z. Lubosny. Wind turbine operation in electric power systems. Berlin: Springer; 2003.


Refbacks

  • There are currently no refbacks.