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首页> 外文期刊>Energy and power engineering >Time Series-, Time-Frequency- and Spectral Analyses of Sensor Measurements in an Offshore Wave Energy Converter Based on Linear Generator Technology
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Time Series-, Time-Frequency- and Spectral Analyses of Sensor Measurements in an Offshore Wave Energy Converter Based on Linear Generator Technology

机译:基于线性发生器技术的近海波能转换器中传感器测量的时间序列,时间频率和频谱分析

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Inside the second experimental wave energy converter (WEC) launched at the Lysekil research site on the Swedish west coast in March 2009 a number of sensor systems were installed for measuring the mechanical performance of the WEC and its mechanical subsystems. One of the measurement systems was a set-up of 7 laser triangulation sensors for measuring relative displacement of the piston rod mechanical lead-through transmission in the direct drive. Two measurement periods, separated by 2.5 month, are presented in this paper. One measurement is made two weeks after launch and another 3 months after launch. Comparisons and correlations are made between different sensors measuring simultaneously. Noise levels are investigated. Filtering is discussed for further refinement of the laser triangulation sensor signals in order to separate noise from actual physical displacement and vibration. Measurements are presented from the relative displacement of the piston rod mechanical lead-through, from magnetic flux in the air gap, mechanical strain in the WEC structure, translator position and piston rod axial displacement and active AC power. Investigation into the measurements in the time domain with close-ups, in the frequency domain with Fast Fourier transform (FFT) and with time-frequency analysis with short time Fourier transform (STFT) is carried out to map the spectral content in the measurements. End stop impact is clearly visible in the time-frequency analysis. The FFT magnitude spectra are investigated for identifying the cogging bandwidth among other vibrations. Generator cogging, fluctuations in the damping force and in the Lorenz forces in the stator are distinguished and varies depending on translator speed. Vibrations from cogging seem to be present in the early measurement period while not so prominent in the late measurement period. Vibration frequencies due to wear are recognized by comparing with the noise at generator standstill and the vibration sources in the generator. It is concluded that a moving average is a sufficient filter in the time domain for further analysis of the relative displacement of the piston rod mechanical lead-through transmission.
机译:2009年3月在瑞典西海岸的Lysekil研究基地发射的第二个实验波能转换器(WEC)内,安装了许多传感器系统,用于测量WEC及其机械子系统的机械性能。测量系统之一是设置7个激光三角测量传感器,用于测量直接驱动中活塞杆机械导通传动装置的相对位移。本文介绍了两个测量周期,相隔2.5个月。发射后两周进行一次测量,发射后再进行三个月。在同时测量的不同传感器之间进行比较和关联。研究了噪声水平。为了进一步细化激光三角测量传感器信号,讨论了滤波,以便将噪声与实际物理位移和振动分开。根据活塞杆机械导通的相对位移,气隙中的磁通量,WEC结构中的机械应变,转换器位置和活塞杆轴向位移以及有功交流功率给出测量值。进行了近距离时域测量的研究,频域快速傅里叶变换(FFT)和时频分析以及短时间傅里叶变换(STFT)的测量,以绘制测量中的频谱内容。在时频分析中可以清楚地看到终点止动的影响。对FFT幅度谱进行了研究,以识别其他振动之间的齿槽效应带宽。发电机的齿槽效应,定子中的阻尼力和洛伦兹力的波动是明显的,并随转换器速度的变化而变化。齿槽效应的振动似乎在测量的早期出现,而在测量的后期则不太明显。通过与发电机静止时的噪声以及发电机中的振动源进行比较,可以识别出由于磨损而产生的振动频率。结论是,移动平均值在时域中是一个足够的过滤器,可用于进一步分析活塞杆机械导通传动装置的相对位移。

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