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Output-only modal analysis of linear time-periodic systems with application to wind turbine simulation data

机译:线性时间周期系统的仅输出模态分析及其在风力涡轮机仿真数据中的应用

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摘要

Many important systems, such as wind turbines, helicopters and turbomachinery, must be modeled with linear time-periodic equations of motion to correctly predict resonance phenomena. Time periodic effects in wind turbines might arise due to blade-to-blade manufacturing variations, stratification in the velocity of the wind with height and changes in the aerodynamics of the blades as they pass the tower. These effects may cause parametric resonance or other unexpected phenomena, so it is important to properly characterize them so that these machines can be designed to achieve high reliability, safety, and to produce economical power. This work presents a system identification methodology that can be used to identify models for linear, periodically time-varying systems when the input forces are unmeasured, broadband and random. The methodology is demonstrated for the well-known Mathieu oscillator and then used to interrogate simulated measurements from a rotating wind turbine. The measurements were simulated for a 5 MW turbine modeled in the HAWC2 simulation code, which includes both structural dynamic and aerodynamic effects. This simulated system identification provides insights into the test and measurement requirements and the potential pitfalls, and simulated experiments such as this may be useful to obtain a set of time-periodic equations of motion from a numerical model, since a closed form model is not readily available by other means due to the way in which the aeroelastic effects are treated in the simulation code.
机译:必须使用线性时间周期运动方程对许多重要系统(例如风力涡轮机,直升机和涡轮机械)进行建模,才能正确预测共振现象。由于叶片到叶片的制造差异,随高度变化的风速分层以及叶片通过塔架时空气动力学的变化,可能会在风力涡轮机中产生时间周期效应。这些影响可能会导致参数共振或其他意外现象,因此正确表征它们的特性很重要,以便可以设计这些电机以实现高可靠性,安全性并产生经济的动力。这项工作提出了一种系统识别方法,当输入力无法测量,宽带且随机时,可用于识别线性,周期性时变系统的模型。该方法论已针对著名的Mathieu振荡器进行了演示,然后用于询问来自旋转风力涡轮机的模拟测量结果。对以HAWC2模拟代码为模型的5 MW涡轮机进行了测量模拟,其中包括结构动力和空气动力效应。这种模拟的系统标识可以洞悉测试和测量要求以及潜在的陷阱,而这种模拟实验对于从数值模型中获取一组时间周期运动方程很有用,因为封闭形式的模型并不容易由于在模拟代码中处理空气弹性效应的方式,因此可以通过其他方式获得。

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