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波長調製型光波導集成MOEMS加速度傳感器設計

Integrated Optical Waveguide MOEMS Accelerometer Design of Wavelength Modulation

  • 摘要: 為了設計一種高靈敏度👂🏼、穩定性好🧝🏼‍♂️、測試簡便的光學加速度計,選擇了對光源穩定性要求低☂️、抗噪能力強的波長調製檢測模塊🐛。基於建立的光學模型,分析了活動光柵數、光柵間距和光柵厚度等主要影響因素。根據透射光譜的變化規律✋🏻,獲得了滿足加速度計需求的模型尺寸和結構。結合微細加工條件,設計出加速度計的微機械結構。經仿真計算🥣,傳感器的機械靈敏度為3.83 μm/g,光學檢測靈敏度為0.52 μm/g📚,分辨率為19×10–6 g,諧響應頻率為471 Hz。提出的高分辨率加速度計適用於強磁場、遠程遙控等環境中的振動監測。

     

    Abstract: In order to design an optical accelerometer with high sensitivity, good stability and easy testing, a wavelength modulation detection module with low requirement for light source stability and strong noise immunity is selected. Based on the established optical model, the main factors, such as the number of moving gratings, the grating spacing and the grating thickness, are analyzed. According to the changing law of the transmission spectrum, the model size and structure of the accelerometer are obtained. Based on the micro machining conditions, the micro mechanical structure of accelerometer is designed. The functional characteristics of the proposed sensor based on simulation results are as follows: a mechanical sensitivity of 3.83 μm/g, an optical sensitivity of 0.52 μm/g, a resolution of 19×10–6g and a resonance frequuency of 471 Hz. The proposed high resolμtion accelerometer is suitable for vibration monitoring in strong magnetic field and remote control environment.

     

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