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- W2334611529 abstract "A designed wind turbine control system not only can produce higher power output, but also can reduce structural loads. Without a reasonable structural model, wind turbine controllers are designed and using a trial-and-error procedure for power and/or speed regulation. Once the controllers have been properly tuned and the turbines experience unstable behavior or severe structural loads, the solutions are usually to stiffen the structures by adding more material and weights into the systems. The consequence is thus a significant increase in cost. This paper presents a mathematical formulation that provides a systematical way to derive the equations of motion (EOMs) describing the structural dynamics of a HAWT. Using the modular wind turbine components, wind turbines of different configurations can be modeled and the EOMs can be constructed automatically with a symbolic math software. The symbolic EOM builder generates explicit nonlinear differential equations. The closed form EOMs can be extremely informative when studying wind turbine performance at unusual operating conditions. Linearized EOMs can then be derived analytically and/or numerically at a user specified operating point and used for controller designs and analysis." @default.
- W2334611529 created "2016-06-24" @default.
- W2334611529 creator A5072519913 @default.
- W2334611529 date "1997-01-06" @default.
- W2334611529 modified "2023-09-25" @default.
- W2334611529 title "Structural dynamics of a HAWT - The mathematical formulation of an automatic equations of a motion builder" @default.
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- W2334611529 doi "https://doi.org/10.2514/6.1997-941" @default.
- W2334611529 hasPublicationYear "1997" @default.
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