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System identification, fuzzy control and simulation of a kite power system with fixed tether length

Abstract. In wind energy research, airborne wind energy systems are one of the promising energy sources in the near future. They can extract more energy from high altitude wind currents compared to conventional wind turbines. This can be achieved with the aid of aerodynamic lift generated by a wing tethered to the ground. Significant savings in investment costs and overall system mass would be obtained since no tower is required. To solve the problems of wind speed uncertainty and kite deflections throughout the flight, system identification is required. Consequently, the kite governing equations can be accurately described. In this work, a simple model was presented for a tether with a fixed length and compared to another model for parameter estimation. In addition, for the purpose of stabilizing the system, fuzzy control was also applied. The design of the controller was based on the concept of Mamdani. Due to its robustness, fuzzy control can cover a wider range of different wind conditions compared to the classical controller. Finally, system identification was compared to the simple model at various wind speeds, which helps to tune the fuzzy control parameters.
- Kyushu University Japan
- Future University in Egypt Egypt
- "TECHNISCHE UNIVERSITEIT DELFT Netherlands
- Delft University of Technology Netherlands
- Kyushu University Japan
Artificial intelligence, Robustness (evolution), FOS: Mechanical engineering, Social Sciences, Tethered Kites, 551, Gene, Biochemistry, Renewable energy sources, Wind speed, Engineering, Lift (data mining), Innovative Methods in Physics Education, Psychology, Physics, Airborne Wind Energy Systems and High-Altitude Platforms, Airborne Wind Energy, FOS: Psychology, Chemistry, Aerospace engineering, Physical Sciences, Social Psychology, Airfoil, TJ807-830, Aerospace Engineering, Geometry, Control (management), Kite, High Altitude Wind Power, Aerodynamics, Meteorology, Control theory (sociology), FOS: Mathematics, Data mining, Psychological and Sociocultural Aspects of Extreme Sports, Statistical and Nonlinear Physics, Computer science, Fuzzy logic, Physics and Astronomy, Fuzzy control system, Electrical engineering, Wind power, Mathematics
Artificial intelligence, Robustness (evolution), FOS: Mechanical engineering, Social Sciences, Tethered Kites, 551, Gene, Biochemistry, Renewable energy sources, Wind speed, Engineering, Lift (data mining), Innovative Methods in Physics Education, Psychology, Physics, Airborne Wind Energy Systems and High-Altitude Platforms, Airborne Wind Energy, FOS: Psychology, Chemistry, Aerospace engineering, Physical Sciences, Social Psychology, Airfoil, TJ807-830, Aerospace Engineering, Geometry, Control (management), Kite, High Altitude Wind Power, Aerodynamics, Meteorology, Control theory (sociology), FOS: Mathematics, Data mining, Psychological and Sociocultural Aspects of Extreme Sports, Statistical and Nonlinear Physics, Computer science, Fuzzy logic, Physics and Astronomy, Fuzzy control system, Electrical engineering, Wind power, Mathematics
citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).8 popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.Top 10% influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).Average impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.Average visibility views 3 download downloads 19 - 3views19downloads
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