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首页> 外文期刊>Sensors and Actuators, A. Physical >An accelerometer with integrative intensity-modulated optical encoder and patterned leaf spring for low-frequency vibration monitoring
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An accelerometer with integrative intensity-modulated optical encoder and patterned leaf spring for low-frequency vibration monitoring

机译:具有集成强度调制光学编码器和带图案的板簧的加速度计,用于低频振动监测

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摘要

Presented in this paper is a development of a high-performance optical accelerometer with new configuration and small size (28 x 24 x 22 mm(3)) that integrates an intensity-modulated linear encoder and a patterned leaf spring. In general, the sensor possesses a strong applicability and keeps a simplified layout and low cost. High resolution, large installing tolerance, and low crosstalk are achieved by employing a 20 mu m-pitch optical encoder based upon Talbot Effect. Moreover, large measurement range, high eigen-frequency, and proper sensitivity is inherent in the sensor by adopting a special-designed patterned leaf spring made by beryllium copper through wet etching. Both theoretical and FEM(Finite Element Modeling) analyses are conducted to optimize the design and verify the scheme whose results show that the measuring range, resolution and sensitivity of the sensor are +/- 160 g, 5 mg, and 110 mV/g, respectively. That the developed optical accelerometer is appropriate for monitoring low frequency vibration between 0 and 32 Hz within a 1.9% error margin and 0.7% crosstalk has been demonstrated by experimental testing. A potential solution to resolve the contradiction between the price and performance is offered, which may help to widespread the usage of the optical-type accelerometers. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文介绍的是一种高性能光学加速度计的开发,该加速度计具有新的配置和小尺寸(28 x 24 x 22 mm(3)),集成了强度调制线性编码器和带图案的板簧。通常,该传感器具有很强的适用性,并保持简化的布局和低成本。通过使用基于Talbot效应的20微米间距的光学编码器,可以实现高分辨率,大安装公差和低串扰。此外,通过采用由铍铜通过湿法蚀刻制成的特殊设计的带图案的板簧,传感器具有固有的大测量范围,高本征频率和适当的灵敏度。进行了理论分析和FEM(有限元建模)分析以优化设计并验证方案,结果表明该传感器的测量范围,分辨率和灵敏度分别为+/- 160 g,5 mg和110 mV / g,分别。实验测试表明,开发的光学加速度计适合在1.9%的误差范围和0.7%的串扰内监视0到32 Hz之间的低频振动。提供了解决价格与性能之间矛盾的潜在解决方案,这可能有助于广泛使用光学式加速度计。 (C)2016 Elsevier B.V.保留所有权利。

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