Adaptive Type-2 Fuzzy Sliding Mode Control for Grid-Connected Wind Turbine Generator Using Very Sparse Matrix Converter

Adaptive Type-2 Fuzzy Sliding Mode Control for Grid-Connected Wind Turbine Generator Using Very Sparse Matrix Converter

The strategy to improve both efficiency and power quality of grid-connected wind turbine generator systems (WTGs) are presented. WTGs efficiency is improved by developing a variable speed control to obtain maximum power at all wind speeds. Variable speed control based on Adaptive Type-2 Fuzzy Sliding Mode Control (AFSMOC) is proposed by employing  Very Sparse Matrix Converter (VSMC). Type-2 fuzzy system is used to improve the robustness of sliding mode control. VSMC can provide low harmonics in line current, so the power quality problems can be minimized. The simulation results shows that the AFSMOC can regulate the generator speed at optimum Tip Speed Ratio (TSR) with maximum error 2.5 rpm, so that the maximum power can be obtained at all wind speeds. VSMC also provide good performance with Total Harmonic Distortion (THD) of voltage 0.35%  and THD of current 6,82%

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  • Flux of permanent magnet Momen of inertia Friction coefficient Rs= 0.2 Ω Ld= Ld = 8.5mH np= 4 ψm= 0.175 Wb J = 0.089 kg m2 B =0.005 N.m.s/rad Wind Turbine Data Blade radius R = 2 m Maximum power coefficient Cp_max = 0.5312 Optimum TSR λopt =8.09
International Journal Of Renewable Energy Research-Cover
  • ISSN: 1309-0127
  • Başlangıç: 2015
  • Yayıncı: İlhami ÇOLAK
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