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Multiple microphone photoacoustic leak detection and localization system and method

机译:多麦克风光声泄漏检测定位系统及方法

摘要

A method and system for multiple microphone photoacoustic leak detection and localization. The leak detection technique uses photoacoustic sounds produced by the interaction of a carbon dioxide (CO2) laser turned to 10.6 microns and a photoactive tracer gas, sulfur hexafluoride (SF6), emitted by calibrated leak sources. As the leaked gas is heated by the laser, it expands and launches a photoacoustic sound pulse. The sound pulses generated by the scanning process are recorded across a broad bandwidth by multiple ultra-sensitive microphones. After the photoacoustic pulses arc recorded, the magnitude is compared with background noise measurement at several frequencies for a determination if a leak is present. If the presence of a leak is found, then the location of the leak is determined. The recorded sound is processed by using Matched Field Processing (MFP) as the signal processing technique. The photoacoustic sounds recorded at the microphones are reversed in time through computer simulation that causes the sounds to converge to the apparent point of origin. No synchronization between the acoustic signal processor and the laser scanner is required.
机译:一种用于多麦克风光声泄漏检测和定位的方法和系统。泄漏检测技术使用由校准为10.6微米的二氧化碳(CO2)激光与校准泄漏源发出的光敏示踪气体六氟化硫(SF 6 )相互作用产生的光声声音。当泄漏的气体被激光加热时,它会膨胀并发出光声脉冲。由扫描过程产生的声音脉冲被多个超灵敏麦克风记录在很宽的带宽内。记录光声脉冲后,将幅度与几个频率下的背景噪声测量值进行比较,以确定是否存在泄漏。如果发现泄漏,则确定泄漏的位置。通过使用匹配场处理(MFP)作为信号处理技术来处理录制的声音。麦克风记录的光声声音会通过计算机仿真及时反转,从而使声音收敛到明显的起源点。声信号处理器和激光扫描仪之间不需要同步。

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