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Surrogate based optimization of helicopter rotor blades for vibration reduction in forward flight

机译:基于代理的直升机旋翼桨叶优化,以降低前向飞行的振动

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摘要

The effectiveness of surrogate modeling of helicopter vibrations, and the use of the surrogates for minimization of helicopter rotor vibrations are studied. The accuracies of kriging, radial basis function interpolation, and polynomial regression surrogates are compared. In addition, the surrogates are used to generate an objective function which is employed in an optimization study. The design variables consist of the cross-sectional dimensions of the structural member of the blade and non-structural masses. The optimized blade is compared with a baseline rotor blade which resembles an MBB BO-105 blade. Results indicate that: (a) kriging surrogates best approximate vibratory hub loads over the entire design space and (b) the surrogates can be used effectively in helicopter rotor vibration reduction studies.
机译:研究了直升机振动的替代模型的有效性,以及使用替代方法最小化直升机旋翼振动的方法。比较了克里金法,径向基函数插值法和多项式回归代理的准确性。另外,替代物用于生成目标函数,该目标函数可用于优化研究。设计变量包括叶片的结构构件的横截面尺寸和非结构质量。将优化的叶片与类似于MBB BO-105叶片的基准转子叶片进行比较。结果表明:(a)克里格替代物在整个设计空间内最佳近似振动轮毂载荷,并且(b)替代物可有效地用于直升机旋翼减振研究。

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