Predicting Premature Failures in Small Wind Turbines with Recurrence Plots

IF 1.4 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Juan C. Jauregui, Ignacio Torres-Contreras
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引用次数: 0

Abstract

Abstract This paper presents the application of the Recurrence Plot as an alternative for pre-processing the raw data. The Recurrence Plots can extract the non-linear and transient response and are sensitive to slight variations in the signal frequency, amplitude, and waveform. Thus, it is an alternative technique for improving the sensitivity; consequently, the prognostic algorithms can predict with better resolution. The data were obtained from an experimental 12 m wind turbine. The transmission was instrumented with three accelerometers and three gyroscopes; the generator's current and voltage were monitored. The difficulty in producing the phase plane using acceleration data is its integration to obtain the kinetic and potential signal energies. This limitation is overcome by integrating the data using the Empirical Mode Decomposition and the shift principle. The results show good sensitivity for predicting variations in the operating conditions and are the basis for other prognostic analyses.
用递归图预测小型风力发电机过早失效
摘要本文介绍了递归图在原始数据预处理中的应用。递归图可以提取非线性和瞬态响应,并且对信号频率、幅度和波形的微小变化敏感。因此,它是提高灵敏度的一种替代技术;因此,预测算法能够以更好的分辨率进行预测。数据来自一台实验性12米风力涡轮机。传输装置装有三个加速度计和三个陀螺仪;对发电机的电流和电压进行了监测。利用加速度数据生成相平面的难点在于对其进行积分以获得信号的动能和势能。通过使用经验模态分解和移位原理对数据进行积分,可以克服这一限制。结果表明,在预测操作条件的变化方面具有良好的敏感性,并为其他预测分析提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.80
自引率
20.00%
发文量
292
审稿时长
2.0 months
期刊介绍: The ASME Journal of Engineering for Gas Turbines and Power publishes archival-quality papers in the areas of gas and steam turbine technology, nuclear engineering, internal combustion engines, and fossil power generation. It covers a broad spectrum of practical topics of interest to industry. Subject areas covered include: thermodynamics; fluid mechanics; heat transfer; and modeling; propulsion and power generation components and systems; combustion, fuels, and emissions; nuclear reactor systems and components; thermal hydraulics; heat exchangers; nuclear fuel technology and waste management; I. C. engines for marine, rail, and power generation; steam and hydro power generation; advanced cycles for fossil energy generation; pollution control and environmental effects.
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