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Component matching chirplet transform via frequency-dependent chirp rate for wind turbine planetary gearbox fault diagnostics under variable speed condition

机译:组件匹配Chirplet在变速条件下通过频率相关的啁啾速率转换风力涡轮机行星齿轮箱故障诊断

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摘要

A component matching chirplet transform (CMCT) via frequency-dependent chirp rate with high time-frequency (TF) resolution is proposed for wind turbine planetary gearbox (WTPG) fault diagnostics under variable speed condition. The challenge of identifying fault-related frequencies with small intervals, due to the time-varying rotational speed and complex structure of WTPG, can be well addressed. Unlike conventional chirplet transform, CMCT can generate a family of frequency-dependent chirplets, which can match all frequency components with a sufficiently high TF resolution. Furthermore, this proposed method does not require any prior knowledge. The effectiveness of CMCT is validated by a numerical simulation and an experimental data collected from a wind turbine drivetrain test rig.
机译:通过具有高时间频率(TF)分辨率的频率相关的啁啾速率的组件匹配的Chirplet变换(CMCT),用于在变速条件下为风力涡轮机行星齿轮箱(WTPG)故障诊断。 由于WTPG的时变速度和复杂结构,识别具有小间隔的故障相关频率的挑战可以很好地解决。 与传统的Chirplet变换不同,CMCT可以生成一系列依赖频率的倍数,这可以匹配具有足够高的TF分辨率的所有频率分量。 此外,这种提出的方法不需要任何先前的知识。 通过数值模拟验证CMCT的有效性和从风力涡轮机动力传动装置测试台收集的实验数据。

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