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Dynamic strain estimation for fatigue assessment of an offshore monopile wind turbine using filtering and modal expansion algorithms

机译:使用过滤和模态展开算法的海上应变单涡轮机疲劳评估的动态应变估算

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摘要

Offshore wind turbines are exposed to continuous wind and wave excitation. The monitoring of high periodic strains at critical locations is important to assess the remaining lifetime of the structure. At some critical locations below the water level, direct measurements of the strains are not feasible. Response estimation techniques can then be used to estimate the strains from a limited set of response measurements and a system model. This paper compares a Kalman filtering algorithm, a joint input-state estimation algorithm, and a modal expansion algorithm, for the estimation of dynamic strains in the tower of an offshore monopile wind turbine. The algorithms make use of a model of the structure and a limited number of response measurements for the prediction of the strain responses. The strain signals obtained from the response estimation algorithms are compared to the actual measured strains in the tower.
机译:海上风力涡轮机暴露于连续的风和波浪激励下。监视关键位置的高周期性应变对于评估结构的剩余寿命很重要。在低于水位的一些关键位置,直接测量应变是不可行的。然后可以使用响应估计技术根据一组有限的响应测量值和系统模型来估计应变。本文比较了卡尔曼滤波算法,联合输入状态估计算法和模态展开算法,用于估计海上单桩风力涡轮机塔架中的动态应变。该算法利用结构模型和有限数量的响应测量值来预测应变响应。从响应估计算法获得的应变信号与塔中实际测得的应变进行比较。

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