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Computer-implemented method for recalibrating at least one yaw angle of a wind turbine, respective systems, computer-implemented method for wind park optimization, and respective wind parks
Computer-implemented method for recalibrating at least one yaw angle of a wind turbine, respective systems, computer-implemented method for wind park optimization, and respective wind parks
To solve the problem of miscalibration of a wind turbine, a computer mounting method for recalibrating at least one yaw angle of the wind turbine starting from the initial yaw angle calibration of the wind turbine is described in the appropriate yaw. Based on determining the turbulence intensity estimate 20 associated with the angle 10, the turbulence intensity T1 is the ratio of the wind speed deviation to the average wind speed over a predetermined period. Further, in order to solve the problem of miscalibration of the wind turbine, the system for recalibrating at least one yaw angle of the wind turbine is based on the above recalibration method. Further, in order to solve the suboptimal wind park management problem, the computer implementation method for wind park optimization is based on the simulation calculation including the turbulence intensity estimation value 20, at least one of the above. It is estimated that the effect-imparting wind turbines 101, 102, 103 receive wakes from the at least one effect-imparted wind turbine 100, 101, 102. In addition, to solve the suboptimal wind park management challenges, the wind park includes a management system for optimizing the wind park based on the above optimization methods. Furthermore, the present invention relates to a computer-readable medium containing such a method.
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