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System Model for MEMS based Laser Ultrasonic Receiver

机译:基于MEMS激光超声波接收器的系统模型

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A need has been identified for more advanced nondestructive Evaluation technologies for assuring the integrity of airframe structures, wiring, etc. Laser ultrasonic inspection instruments have been shown to detect flaws in structures. However, these instruments are generally too bulky to be used in the confined spaces that are typical of aerospace vehicles. Microsystems technology is one key to reducing the size of current instruments and enabling increased inspection coverage in areas that were previously inaccessible due to instrument size and weight. This paper investigates the system modeling of a Micro OptoElectroMechanical System (MOEMS) based laser ultrasonic receiver. The system model is constructed in software using MATLAB's dynamical simulator, Simulink. The optical components are modeled using geometrical matrix methods and include some image processing. The system model includes a test bench which simulates input stimuli and models the behavior of the material under test.
机译:已经确定了需要更先进的非破坏性评估技术,以确保机身结构,布线等激光超声检查仪器的完整性检测结构中的缺陷。然而,这些仪器通常太笨重可用于典型的航空航天车辆的狭窄空间。 MicroSystems技术是减少当前仪器尺寸的一个关键,并且在仪器尺寸和重量之前可以在以前无法进入的区域中提高检查覆盖率。本文研究了基于微光电机械系统(MOEMS)激光超声波接收器的系统建模。使用MATLAB的动态模拟器,SIMULINK在软件中构建系统模型。光学组件使用几何矩阵方法进行建模,并包括一些图像处理。系统模型包括测试台,模拟输入刺激并模拟正在测试的材料的行为。

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