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Modified cantilever beam shaped FBG based accelerometer with self temperature compensation

机译:具有温度补偿功能的基于悬臂梁的改进型FBG加速度计

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This paper focuses on Fiber Bragg Grating (FBG) based accelerometer design. The accelerometer structure consists of inertial mass supported by an L-shaped modified cantilever beam having non-uniform cross section area connected to base by a thin neck element which acts as strain concentrated centre hence an optimum zone for FBG sensors placement. It has a working bandwidth below the structure's natural frequency and responds linearly to vibrations. The parameters for the structure design have been optimised on SolidWorks 2012 platform. Experimental trials yield sensitivity of 46 pm/g for frequency below 50 Hz and 306 pm/g for frequency above 150 Hz. A mathematical model for the accelerometer structure's natural frequency modes is also presented with detailed analysis for different combinations of inertial mass-frame assembly.
机译:本文重点介绍基于光纤布拉格光栅(FBG)的加速度计设计。加速度计结构由惯性质量组成,该惯性质量由L型修改的悬臂梁支撑,该悬臂梁的横截面面积不均匀,通过细颈元件连接到基座,细颈元件用作应变集中中心,因此是FBG传感器放置的最佳区域。它的工作带宽低于结构的固有频率,并且对振动具有线性响应。在SolidWorks 2012平台上对结构设计的参数进行了优化。实验试验对低于50 Hz的频率产生46 pm / g的灵敏度,对于高于150 Hz的频率产生306 pm / g的灵敏度。还提供了加速度计结构固有频率模式的数学模型,并对惯性质量框架组件的不同组合进行了详细分析。

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