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Fiber-optical Sensor with Intensity Compensation Model in College Teaching of Physics Experiment

机译:大学物理实验教学中带强度补偿模型的光纤传感器

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Optical fiber sensor technology is one of the main contents of modern information technology, which has a very important position in modern science and technology. Fiber optic sensor experiment can improve students' enthusiasm and broaden their horizons in college physics experiment. In this paper the main structure and working principle of fiber-optical sensor with intensity compensation model are introduced. And thus fiber-optical sensor with intensity compensation model is applied to measure micro displacement of Young's modulus measurement experiment and metal linear expansion coefficient measurement experiment in the college physics experiment. Results indicate that the measurement accuracy of micro displacement is higher than that of the traditional methods using fiber-optical sensor with intensity compensation model. Meanwhile this measurement method makes the students understand on the optical fiber, sensor and nature of micro displacement measurement method and makes each experiment strengthen relationship and compatibility, which provides a new idea for the reform of experimental teaching.
机译:光纤传感器技术是现代信息技术的主要内容之一,在现代科学技术中具有非常重要的地位。光纤传感器实验可以提高学生的积极性,拓宽大学物理实验的视野。介绍了具有强度补偿模型的光纤传感器的主要结构和工作原理。因此,在大学物理实验中,将具有强度补偿模型的光纤传感器用于测量杨氏模量实验和金属线膨胀系数实验的微位移。结果表明,微位移的测量精度高于传统的使用带有强度补偿模型的光纤传感器的方法。同时这种测量方法使学生对光纤,传感器和微位移测量方法的本质有了了解,并使每个实验之间的联系和兼容性增强,为实验教学的改革提供了新思路。

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