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A novel signal processing technique for separating tonal and broadband noise components from counter-rotating open-rotor acoustic data

机译:一种从反向旋转转子声数据中分离音调和宽带噪声分量的新型信号处理技术

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摘要

Renewed interest in counter-rotating open-rotor technology for aircraft propulsion application has prompted the development of advanced diagnostic tools to enable improved design and improved acoustical performance of open rotors. In particular, the determination of tonal and broadband components of open-rotor noise spectra is essential for properly assessing the noise control parameters and for validating noise prediction codes. Techniques that have been successfully used for processing acoustic data from single rotors (fans, propellers, etc.) do not work well for counter-rotating open-rotor systems in that the tonal and broadband noise components cannot be separated from raw acoustic data properly, particularly when the two rotors are driven independently without synchronization. The need for a new signal processing tool for counter-rotating open rotors was thus envisioned and is presented in this work. The new technique has been verified to perform well against simulated data as well as real acoustic data available from scale-model open-rotor tests at NASA-Glenn Research Center. Based on the results, the applicability and limitations of the technique are discussed in the paper.
机译:对用于飞机推进应用的反向旋转开放旋翼技术的新兴趣促使开发了先进的诊断工具,以改进开放旋翼的设计和声学性能。特别地,确定开式转子噪声频谱的音调和宽带分量对于正确评估噪声控制参数和验证噪声预测代码至关重要。已成功用于处理来自单个转子(风扇,螺旋桨等)的声学数据的技术不适用于反向旋转的开放转子系统,因为音调和宽带噪声分量无法与原始声学数据正确分离,特别是当两个转子不同步地独立驱动时。因此可以预见需要一种新的信号处理工具来反向旋转打开的转子,并在这项工作中提出。新技术已经过验证,可以很好地与模拟数据以及NASA-Glenn研究中心的比例模型开式转子测试中获得的真实声学数据相媲美。在此基础上,讨论了该技术的适用性和局限性。

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