首页> 外国专利> ACTIVE CONTROL OF AIRCRAFT ENGINE INLET NOISE USING COMPACT SOUND SOURCES AND DISTRIBUTED ERROR SENSORS

ACTIVE CONTROL OF AIRCRAFT ENGINE INLET NOISE USING COMPACT SOUND SOURCES AND DISTRIBUTED ERROR SENSORS

机译:利用紧凑的声源和分布式误差传感器主动控制飞机发动机进气噪声

摘要

An active noise control system using a compact sound source is effective to reduce aircraft engine duct noise. The fan noise from a turbofan engine is controlled using an adaptive filtered-x LMS algorithm. Single multi channel control systems are used to control the fan blade passage frequency (BPF) tone and the BPF tone and the first harmonic of the BPF tone for a plane wave excitation. A multi channel control system is used to control any spinning mode. The multi channel control system to control both fan tones and a high pressure compressor BPF tone simultaneously. In order to make active control of turbofan inlet noise a viable technology, a compact sound source is employed to generate the control field. This control field sound source consists of an array of identical thin, cylindrically curved panels with an inner radius of curvature corresponding to that of the engine inlet. These panels are flush mounted inside the inlet duct and sealed on all edges to prevent leakage around the panel and to minimize the aerodynamic losses created by the addition of the panels. Each panel is driven by one or more piezoelectric force transducers mounted on the surface of the panel. The response of the panel to excitation is maximized when it is driven at its resonance; therefore, the panel is designed such that its fundamental frequency is near the tone to be canceled, typically 2000-4000 Hz.
机译:使用紧凑声源的主动噪声控制系统可有效降低飞机发动机导管的噪声。涡轮风扇发动机的风扇噪声使用自适应X滤波LMS算法控制。单个多通道控制系统用于控制风扇叶片通过频率(BPF)音调和BPF音调以及BPF音调的一次谐波,以进行平面波激励。多通道控制系统用于控制任何旋转模式。多通道控制系统可同时控制风扇音调和高压压缩机BPF音调。为了使主动控制涡扇进气噪声成为可行的技术,采用紧凑的声源来产生控制场。该控制场声源由相同的薄的圆柱状弯曲面板组成,其内曲率半径对应于发动机进气口的曲率半径。这些面板齐平安装在进气道内部,并在所有边缘上进行密封,以防止面板周围泄漏,并最大程度地减少添加面板时产生的空气动力学损失。每个面板由安装在面板表面上的一个或多个压电力传感器驱动。当面板以其共振被驱动时,面板对激励的响应最大化。因此,面板的设计应使其基本频率接近要消除的音调,通常为2000-4000 Hz。

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