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Design and Modification of a High-Resolution Optical Interferometer Accelerometer

机译:高分辨率光学干涉仪加速度计的设计与修改

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摘要

The Micro-Opto-Electro-Mechanical Systems (MOEMS) accelerometer is a new type of accelerometer that combines the merits of optical measurement and Micro-Electro-Mechanical Systems (MEMS) to enable high precision, small volume, and anti-electromagnetism disturbance measurement of acceleration, which makes it a promising candidate for inertial navigation and seismic monitoring. This paper proposes a modified micro-grating-based accelerometer and introduces a new design method to characterize the grating interferometer. A MEMS sensor chip with high sensitivity was designed and fabricated, and the processing circuit was modified. The micro-grating interference measurement system was modeled, and the response sensitivity was analyzed. The accelerometer was then built and benchmarked with a commercial seismometer in detail. Compared to the previous prototype in the experiment, the results indicate that the noise floor has an ultra-low self-noise of 15 ng/Hz1/2.
机译:微光电机械系统(MOEMS)加速度计是一种新型的加速度计,它结合了光学测量和微机电系统(MEMS)的优点,以实现高精度,小体积和抗电磁干扰测量加速度,这使其成为惯性导航和地震监测的有希望的候选者。本文提出了一种改进的微光栅加速度计,并引入了一种新的设计方法来表征光栅干涉仪。设计和制造具有高灵敏度的MEMS传感器芯片,并修改了处理电路。微光栅干扰测量系统进行了建模,分析了响应灵敏度。然后详细构建加速度计并用商业地震表建造和基准。与实验中的先前原型相比,结果表明噪声地板具有15ng / hz1 / 2的超低自噪声。

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