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机构地区:[1]北京信息科技大学光电测试技术北京市重点实验室,北京100101
出 处:《北京信息科技大学学报(自然科学版)》2017年第2期30-33,共4页Journal of Beijing Information Science and Technology University
基 金:北京市教委科技计划面上项目(KM201411232005);北京市青年拔尖人才培育计划(CIT&TCD201404122);光电测试技术北京市重点实验室资助项目(GDKF2013002)
摘 要:针对百米内光纤长度的测量设计了一种新型的激光测量光纤长度系统。该系统依据相位式激光测距原理,通过对激光光强的调制、利用光在传输过程中的相位延迟与光纤长度之间的线性关系测量光纤长度。激光的调制发射由正弦信号与基准电压经过求和电路实现,相位延迟量由探测器接收信号与调制信号经过模拟鉴相后获得,AD数据采集后由单片机处理及显示。实验表明,系统测量光纤长度的稳定度小于0.66 m,最大绝对误差小于0.25 m,最大相对误差小于1.2%。利用该方法设计的光纤长度测量系统电路简单有效、功率小,且具有较高的测量精度和稳定性。A new type of fiber length laser measuring system is designed to measure the fiber length in 100 meters. Based on the principle of laser distance measurement, modulating the intensity of laser light, the length of the fiber is measured by the linear relationship between the phase delay and the length of the optical fiber. The modulation of the laser is realized by the sine signal and the reference voltage. After the detector receives the signal and the modulation signal passes through the analog phase demodulation , phase retardation that is related to the length of the optical fiber is obtained, and the data is processed by the MCU after AD acquisition. The stability of the system is less than 0.66m; the maximum absolute error is less than 0.33m; the maximum relative error is less than 1.6%. The optical fiber length measurement system designed by this method is simple and effective, low in power, and high in accuracy and stability.
分 类 号:TN247[电子电信—物理电子学]
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