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Wind turbine blade damage detection using an active sensing approach

机译:使用主动感应方法检测风机叶片损坏

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The wind energy sector is one of the fastest growing parts of the clean energy industry. As the wind energy sector grows, so does an increasing concern for the damage detection of wind turbine blades. This paper proposes an active sensing approach by utilizing piezoceramic transducers as actuators and sensors. The influence of the crack quantity, location, length and depth on the wave propagation was experimentally studied. Sweep sine signals ranging from 1 khz to 50 khz were used as input signals for active sensing. The change in the energy that propagated through the cracks was verified as feasible in detecting crack-related damage. An innovative polar plot analysis method based on Fast Fourier transform was developed to compare the minuscule difference between the damage signals and the baseline signal. The polar plot was able to make apparent differences in both the magnitude and the phase of the signals, which could be correlated to crack depth and plane geometry, respectively, based on the observation of the damage.
机译:风能行业是清洁能源行业中发展最快的部分之一。随着风能领域的发展,对风力涡轮机叶片的损坏检测的关注也日益增加。本文提出了一种利用压电陶瓷换能器作为执行器和传感器的主动传感方法。实验研究了裂纹数量,位置,长度和深度对波传播的影响。扫描正弦信号范围从1 khz到50 khz,用作主动感应的输入信号。经验证,通过裂纹传播的能量变化在检测裂纹相关损伤方面是可行的。开发了一种基于快速傅立叶变换的极坐标图分析方法,以比较损伤信号和基线信号之间的微小差异。极坐标图能够在信号的幅度和相位上产生明显的差异,根据损伤的观察结果,这可以分别与裂纹深度和平面几何形状相关。

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