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Performance Analysis of Grid Connected Hybrid Wind/Diesel /Micro turbine Generation System
Dr. T. Ananthapadmanabha1,a, H.Pradeepa2,b,R.Chidanandappa2,
Dr.A.D.Kulkarni2, K. Gopal Reddy3, Radhakrishna4
1Professor, Dept. of E&E Engg, The National Institute of Engineering, Mysore,India 2Asst. Prof, Dept. of E&E Engg, The National Institute of Engineering, Mysore, India 3Asst. Prof, Dept of E&E Engg, Vidya Vardhaka College of Engineering, Mysore, India 4Asst. Prof, Dept of E&E Engg, Rajiv Institute of Technology, Hassan, India
Keywords: Wind power, Micro turbine, diesel generator, Voltage profile, sudden disturbance, Network reconfiguration and Uncertainty.
At the distribution level voltage profiles plays an important role. The distribution system operation uncertainties including varying load, wind power generation, network reconfiguration, and voltage control devices operation will be taken into account in the analysis. The voltage profile at each bus of the system will be analyzed and then voltage control devices will be operated to improve voltage distributions based on the voltage level. A modified IEEE 16 node feeder test system will be used for simulation, and further analysis will be done on sudden disturbance due to fault. All the above analysis will be carried out using MATLAB/SIMULINK tool. Examinations include transient stability and voltage stability analysis of the system, fault analysis and reactive power compensation. Thus a small hybrid power generation system comprising a wind turbine, a diesel generator and a micro turbine will be simulated and analyzed.
The rapid development of distributed generation (DG) technology is gradually reshaping the conventional power systems in a number of countries including India. Wind power turbines, fuel cells, micro turbines, diesel generators and photo voltaic arrays are among the most actively developing distributed generation systems. Some of the alternate energy sources that are clean and abundantly available are wind power, photo voltaic power; co-generation systems [micro turbines] and the use of these sources are rapidly growing in the society. A typical hybrid generation system relies on power electronic interfacing for functioning and interfacing between different generating units and with the distribution network (in grid connected operation). Proper modeling of these DGs, which constitute hybrid generation systems, is needed in order to study their operation and impact on power system.
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