Proposed control policy for high power transfer capability DFIG

Faculty Engineering Year: 2018
Type of Publication: ZU Hosted Pages:
Authors:
Journal: Electric Power Systems Research Elsevier B.V. Volume: Vol 155, pp.144-152 February 2018
Keywords : Proposed control policy , high power transfer    
Abstract:
tThis paper aims to extract maximum power from wind turbine at all permissible wind speed rangewhile minimizing the total copper loss of the doubly fed induction generator (DFIG) simultaneously.A proposed steady state model is presented whereby unity rotor power factor (URPF) of the DFIG andwind-turbine MPPT variables are the state variables. The URPF proposed variable is the load angle (˛) bywhich the generator performance characteristics can be controlled over the whole operating speed range.Comparison of URPF with conventional operation is given. This comparison illustrate and evaluate thegenerator performance characteristics at URPF operation up two twice synchronous speed. An analyticalapproach has been implemented to predict the optimal load angle and the speed dependent rotor voltagemagnitude that insure MPPT at URPF. This speed dependent rotor voltage magnitude may be burnt into theEPROM of the digital reference generator provided by a rotor side converter in DSP system. Experimentalresults are given to strongly validate the proposed technique. Results have shown the DFIG as high powertransfer capability (HPTC) transducer.
   
     
 
       

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  • Nadia Abdelwahab Hammam Elsonbaty, "New Control Technique for Performance Improvement of Static Kramer Induction Generator", Emerald Group Publishing Ltd, 2016 More
  • Nadia Abdelwahab Hammam Elsonbaty, "Steady State Modeling and ANFIS Based Analysis of Doubly – Fed Induction Generator", Michael Faraday IET International Summit–2015, MFIIS(2015), 2015 More

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