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Fiber optic sensor for monitoring vibration load

机译:用于监控振动负荷的光纤传感器

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摘要

An important factor affecting the operation of any mechanical unit is the vibration of its individual components. Therefore, the development of tools for the continuous monitoring of vibration loads at critical points in the design of assemblies and mechanisms can be considered one of the most promising ways of increasing the quality and reliability of the technological equipment. Contactless fiber optic sensors with external amplitude modulation of the radiation flux can be a good basis for creating built-in vibration diagnostics of a wide class of industrial facilities, from high-precision robotic systems to systems operating in conditions of strong electromagnetic interference and harsh environments. The paper analyzes the main factors affecting the accuracy of the non-contact displacement measurement of an object via a fiber-optic sensor with external modulation. The structure and the algorithm of forming the measuring data of the sensor with automatic compensation of the influence of external factors intended for measuring the amplitude of vibration in industrial conditions are described. The results of the experimental research of the accuracy of the developed sensor on shape and surface quality of the controlled object, the sensor positioning errors during installation and state of the environment in the control zone are considered.
机译:影响任何机械单元的操作的重要因素是其各个组件的振动。因此,在组件和机构设计中连续监测振动载荷的振动载荷的工具的开发可被认为是提高技术设备的质量和可靠性的最有希望的方法之一。具有外部幅度调制的非接触式光纤传感器,辐射通量可以是创建各类工业设施的内置振动诊断的良好基础,从高精度机器人系统到在强大的电磁干扰和恶劣环境条件下运行的系统。本文分析了通过具有外部调制的光纤传感器影响物体的非接触位移测量精度的主要因素。描述了具有自动补偿用于测量工业条件中振动幅度的外部因素的自动补偿的传感器测量数据的结构和算法。显影传感器精度对受控对象的形状和表面质量的准确性的实验研究结果,考虑了控制区内的环境期间的传感器定位误差。

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