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用于光纤法布里-珀罗传感器腔长互相关解调的光楔的数学模型研究

Mathematical Model of Optical Wedges for Cross-Correlation Demodulation of Cavity Length of Optical Fiber Fabry-Pérot Sensors

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【作者】 赵艳王代华

【Author】 Zhao Yan1,2 Wang Daihua1,21Key Laboratory of Optoelectronic Technology and Systems,Ministry of Education,Chongqing University,Chongqing 400044,China2Precision and Intelligence Laboratory,Department of Optoelectronic Engineering,Chongqing University,Chongqing 400044,China

【机构】 重庆大学光电技术及系统教育部重点实验室重庆大学光电工程学院精密与智能实验室

【摘要】 光楔是实现光纤法布里-珀罗(F-P)传感器互相关解调的重要光学元件。根据互相关解调的原理分析了造成光楔和光纤F-P传感器F-P腔的反射光相位不同的因素,进而建立了光楔的干涉光强的数学模型,在此基础上对具有不同反射率的光楔的干涉光强进行了数值仿真,和相同反射率的光纤F-P传感器F-P腔的干涉光强对比之后建立了光楔的简化数学模型。对光楔的简化数学模型进行的误差分析表明:当光楔的楔角小于0.1°且两端面反射率乘积不大于9%时,光楔的简化数学模型引入的误差小于0.6%。光楔的数学模型为建立基于互相关解调的光纤F-P传感系统以及进一步提高系统的解调精度奠定了理论基础。

【Abstract】 The optical wedge plays a vital role in the cross-correlation demodulation system of optical fiber Fabry-Pérot(F-P) sensors.A mathematical model for the light intensity reflected from the optical wedge is established based on analyzing results of the factors that cause the interference optical phase differences between the optical wedge and the F-P cavity of optical fiber F-P sensors according to the cross-correlation demodulation principle.The light intensity reflected from the optical wedges with different reflectivity combinations are numerically simulated and a simplified mathematical model for the light intensity reflected from the optical wedge is established by comparing the light intensity reflected from the optical wedge with those from the F-P cavity with the same reflectivity combinations.The analysis results of errors between the simplified mathematical model and the mathematical model indicate that the error of the simplified mathematical model for optical wedges is less than 0.6% when the optical wedge angle is less than 0.1° and the product of two surfaces′ reflectivity is not more than 9%.The simplified theoretical model of the optical wedges lays a theoretical foundation for establishing optical fiber F-P sensor systems based on the cross-correlation demodulation principle and further improving the accuracy of the demodulation system.

【基金】 重庆市科委自然科学重点基金(2009BA5072);高等学校科技创新工程重大项目(706048)资助课题
  • 【文献出处】 光学学报 ,Acta Optica Sinica , 编辑部邮箱 ,2011年01期
  • 【分类号】TP212.14
  • 【被引频次】38
  • 【下载频次】499
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