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An Advanced Multi-Sensor Acousto-Ultrasonic Structural Health Monitoring System: Development and Aerospace Demonstration

机译:先进的多传感器声-超声结构健康监测系统:开发和航空航天演示

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摘要

A key longstanding objective of the Structural Health Monitoring (SHM) research community is to enable the embedment of SHM systems in high value assets like aircraft to provide on-demand damage detection and evaluation. As against traditional non-destructive inspection hardware, embedded SHM systems must be compact, lightweight, low-power and sufficiently robust to survive exposure to severe in-flight operating conditions. Typical Commercial-Off-The-Shelf (COTS) systems can be bulky, costly and are often inflexible in their configuration and/or scalability, which militates against in-service deployment. Advances in electronics have resulted in ever smaller, cheaper and more reliable components that facilitate the development of compact and robust embedded SHM systems, including for Acousto-Ultrasonics (AU), a guided plate-wave inspection modality that has attracted strong interest due mainly to its capacity to furnish wide-area diagnostic coverage with a relatively low sensor density. This article provides a detailed description of the development, testing and demonstration of a new AU interrogation system called the Acousto Ultrasonic Structural health monitoring Array Module+ (AUSAM+). This system provides independent actuation and sensing on four Piezoelectric Wafer Active Sensor (PWAS) elements with further sensing on four Positive Intrinsic Negative (PIN) photodiodes for intensity-based interrogation of Fiber Bragg Gratings (FBG). The paper details the development of a novel piezoelectric excitation amplifier, which, in conjunction with flexible acquisition-system architecture, seamlessly provides electromechanical impedance spectroscopy for PWAS diagnostics over the full instrument bandwidth of 50 KHz–5 MHz. The AUSAM+ functionality is accessed via a simple hardware object providing a myriad of custom software interfaces that can be adapted to suit the specific requirements of each individual application.
机译:结构健康监测(SHM)研究社区的一个长期关键目标是使SHM系统嵌入飞机等高价值资产中,以提供按需检测和评估。与传统的非破坏性检查硬件相比,嵌入式SHM系统必须紧凑,轻巧,低功耗并且足够坚固,以承受恶劣的飞行操作条件。典型的现成商用(COTS)系统可能体积庞大,成本高昂,而且其配置和/或可伸缩性通常不灵活,这不利于服务中部署。电子技术的进步导致更小,更便宜和更可靠的组件推动了紧凑,坚固的嵌入式SHM系统的开发,其中包括声-超声波(AU),这是一种导引的板波检查方法,受到了广泛的关注,它具有以相对较低的传感器密度提供广域诊断覆盖的能力。本文详细介绍了一种新的AU查询系统的开发,测试和演示,该系统称为Acousto超声波结构健康监测阵列模块 + (AUSAM + )。该系统在四个压电晶片有源传感器(PWAS)元件上提供独立的致动和传感功能,并在四个正本征(PIN)光电二​​极管上提供进一步的传感功能,用于基于强度的光纤布拉格光栅(FBG)询问。本文详细介绍了新型压电激励放大器的开发,该放大器与灵活的采集系统架构相结合,可在50 KHz-5 MHz的整个仪器带宽上无缝地提供用于PWAS诊断的机电阻抗谱。 AUSAM + 功能通过一个简单的硬件对象进行访问,该对象提供了许多自定义软件接口,这些接口可以进行调整以适合每个单独应用程序的特定要求。

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