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MEMS Microphone Array Sensor for Air-Coupled Impact-Echo

机译:空气耦合冲击回声的MEMS麦克风阵列传感器

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摘要

Impact-Echo (IE) is a nondestructive testing technique for plate like concrete structures. We propose a new sensor concept for air-coupled IE measurements. By using an array of MEMS (micro-electro-mechanical system) microphones, instead of a single receiver, several operational advantages compared to conventional sensing strategies in IE are achieved. The MEMS microphone array sensor is cost effective, less sensitive to undesired effects like acoustic noise and has an optimized sensitivity for signals that need to be extracted for IE data interpretation. The proposed sensing strategy is justified with findings from numerical simulations, showing that the IE resonance in plate like structures causes coherent surface displacements on the specimen under test in an area around the impact location. Therefore, by placing several MEMS microphones on a sensor array board, the IE resonance is easier to be identified in the recorded spectra than with single point microphones or contact type transducers. A comparative measurement between the array sensor, a conventional accelerometer and a measurement microphone clearly shows the suitability of MEMS type microphones and the advantages of using these microphones in an array arrangement for IE. The MEMS microphone array will make air-coupled IE measurements faster and more reliable.
机译:冲击回波(IE)是一种用于板状混凝土结构的无损检测技术。我们提出了一种用于空气耦合IE测量的新传感器概念。通过使用MEMS(微机电系统)麦克风阵列,而不是单个接收器,与IE中的常规传感策略相比,可以实现几个操作优势。 MEMS麦克风阵列传感器具有成本效益,对诸如声音之类的不良影响不敏感,并且对于需要提取IE数据解释的信号具有优化的灵敏度。数值模拟的结果证明了提出的传感策略是合理的,表明板状结构中的IE共振会在冲击位置周围的区域内引起被测样品的相干表面位移。因此,通过在传感器阵列板上放置几个MEMS麦克风,与单点麦克风或接触式传感器相比,更容易在记录的频谱中识别IE共振。阵列传感器,常规加速度计和测量麦克风之间的比较测量清楚地表明了MEMS型麦克风的适用性以及在IE中以阵列方式使用这些麦克风的优势。 MEMS麦克风阵列将使空气耦合的IE测量更快,更可靠。

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