四象限光电探测器光学加速度计的设计

Y. Lei, Ruijun Li, Zhen-Xin Chang, Liansheng Zhang, K. Fan
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引用次数: 1

摘要

低频振动是影响精密加工和高精度测量精度的有害因素。气浮平台不能完全消除低频微振动。因此,在主动抑制低频振动之前,必须对低频振动进行高精度测量。提出了一种低成本、高灵敏度的低频光学加速度计。该光学加速度计主要由三部分组成:地震质量、钢板弹簧和位移传感器(四象限光电探测器)。当检测到振动时,由于惯性的影响,地震质量上下移动,使用光学杠杆放大并由四象限光电探测器测量。然后,可以计算出加速度。利用ANSYS软件对不同抗震结构的共振频率和弹性系数进行模拟,实现低频低幅振动的最优检测。标定实验结果表明,该光学加速度计的灵敏度为4.92 V (m·s−2)−1,测量范围为0.0095 ~ 2.58 m·s−2,工作频率为5 Hz ~ 15 Hz。验证了光学加速度计在测量低频和低幅值动态响应方面的有效性。
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Design of optical accelerometer using four-quadrant photodetector
Low-frequency vibration is a harmful factor that affects the accuracy of precision machining and high precision measurement. Low-frequency micro-vibration cannot be completely eliminated by air-floating platforms. Therefore, lowfrequency vibration must be measured with high-precision before being suppressed actively. A low-cost high-sensitivity low-frequency optical accelerometer is proposed. This optical accelerometer mainly consists of three components: a seismic mass, a leaf spring, and a displacement sensor (four-quadrant photodetector). When vibration is detected, the seismic mass moves up and down due to the effect of inertia, which is amplified by using an optical lever and measured by the four-quadrant photodetector. Then, the acceleration can be calculated. The resonant frequencies and elastic coefficients of various seismic structures are simulated by ANSYS software to attain the optimal detection of lowfrequency low-amplitude vibration. The accelerometer is calibrated using a homemade vibration calibration system, and the calibration experimental results demonstrate that the sensitivity of the optical accelerometer is 4.92 V (m·s−2 ) −1 , the measurement range of the accelerometer is 0.0095–2.58 m·s−2 , and the operating frequencies range from 5 Hz to 15 Hz. The efficacy of the optical accelerometer in measuring low-frequency and low-amplitude dynamic responses is verified.
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