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Two-sensor ultrasonic spacecraft leak detection using structure-borne noise

机译:基于结构噪声的两传感器超声航天器泄漏检测

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摘要

Micrometeorite hits can create air leaks in manned spacecraft. Leak-generated-guided ultrasonic waves can be monitored within the platelike spacecraft skin to detect and locate leaks. Cross-correlation techniques allow measurement of the deterministic behavior of the leak-generated noise. Measured leak-into-vacuum cross-correlations of noise signals from two adjacent transducers are recorded as the transducer pair is rotated to determine the relative phase delay as a function of rotation angle. The direction to the leak is found from the variation of phase with angle or from synthetic aperture analysis. The leak is then located through triangulation from two or more sensor-pair locations.
机译:撞击微型陨石会导致载人航天器漏气。泄漏产生的引导超声波可以在板状航天器皮肤内进行监测,以检测和定位泄漏。互相关技术可以测量泄漏产生的噪声的确定性行为。当换能器对旋转时,记录来自两个相邻换能器的噪声信号的实测泄漏-互相关性,以确定相对相位延迟作为旋转角的函数。从相位随角度的变化或合成孔径分析中可以找到泄漏的方向。然后,通过三角测量从两个或更多传感器对位置定位泄漏点。

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