Intelligent Knife Switch Contact Status Monitoring Based on Special-Shaped Beam Fiber Bragg Grating Electromechanical Sensor

IF 0.6 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Nanoelectronics and Optoelectronics Pub Date : 2023-07-01 DOI:10.1166/jno.2023.3449
Huarong Zeng, Xiaohong Ma, Kui Xu, Qi Yang, Weiling Yin
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Abstract

To ensure the safety of people’s lives and property, the accurate measurement of various small vibrations is of great significance. Using gratings as sensitive components to make optical fiber sensors is a kind of electromechanical vibration measurement device with rapid development. In this study, a special-shaped beam Fiber Bragg Grating (FBG) electromechanical vibration sensor with sensitized grooves is proposed based on equal-strength cantilever beams. The composition and implementation principle of FBG sensing system are expounded, and how to realize the signal induction of FBG under vibration conditions is further analyzed. According to the intrinsic relationship between sensitivity coefficient and natural frequency in vibration sensor, the sensor head structure composed of structural parameters, such as equal-strength beam length of 73 mm, bottom width of 14 mm, and thickness of 5 mm, is finally selected. With the help of ANSYS software to calculate the natural frequency of the sensing head as a theoretical reference value, and SS304 stainless steel is selected as the cantilever beam to obtain a good vibration sensing effect. In the test, the acceleration is set to 0.35 G, and the pulse generates a sinusoidal signal of 0–10000 Hz. The natural frequency of the sensing head is 182 Hz, and the sensitivity is 100 mV/G, which is only small error with the theoretical analysis value calculated by ANSYS. The acceleration of the sensing head is changed, and different degrees of vibration are generated. The results show that the change of output center wavelength has a linear relationship with the acceleration change. The introduction of sensitized grooved special-shaped beams helps to improve the sensitivity of the device to perceive vibration. It is used for the monitoring of the contact status of the intelligent knife switch. The results show that the designed photoelectric grating electromechanical sensor measurement has good repeatability, and the wavelength of the reflection interrogator will suddenly increase and decrease rapidly with obvious regularity.
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基于异形光束光纤光栅机电传感器的智能刀开关触点状态监测
对各种微小振动进行准确测量,对保障人民生命财产安全具有重要意义。利用光栅作为敏感元件制作光纤传感器是一种发展迅速的机电振动测量装置。本文提出了一种基于等强度悬臂梁的异形梁型光纤Bragg光栅机电振动传感器。阐述了光纤光栅传感系统的组成和实现原理,并进一步分析了如何在振动条件下实现光纤光栅的信号感应。根据振动传感器中灵敏度系数与固有频率的内在关系,最终选择了等强度梁长73 mm、底宽14 mm、厚度5 mm等结构参数组成的传感器头部结构。借助ANSYS软件计算出传感头的固有频率作为理论参考值,并选择SS304不锈钢作为悬臂梁,以获得良好的振动传感效果。在测试中,加速度设置为0.35 G,脉冲产生0-10000 Hz的正弦信号。传感头的固有频率为182 Hz,灵敏度为100 mV/G,与ANSYS计算的理论分析值误差很小。改变传感头的加速度,产生不同程度的振动。结果表明,输出中心波长的变化与加速度变化呈线性关系。引入敏化槽异形梁有助于提高器件感知振动的灵敏度。用于监控智能刀开关的触点状态。结果表明,所设计的光电光栅机电传感器测量具有良好的重复性,反射询问器的波长会突然快速增减,且有明显的规律性。
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来源期刊
Journal of Nanoelectronics and Optoelectronics
Journal of Nanoelectronics and Optoelectronics 工程技术-工程:电子与电气
自引率
16.70%
发文量
48
审稿时长
12.5 months
期刊最新文献
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