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基于经验模态分解的折射率、pH和温度三参量同时检测光纤传感器

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提出了一种基于表面等离子体共振(SPR)和马赫-曾德尔干涉(MZI)效应结合经验模态分解(EMD)同时对折射率、pH和温度进行检测的光纤传感器。该传感器由空芯光纤(HCF)与两段多模光纤(MMF)构成,利用银纳米膜和聚丙烯酸/壳聚糖(PAA/CS)高折射率pH敏感材料将HCF的侧面划分成区域I和区域Ⅱ,分别用于测量折射率(单位为RIU)和pH。通过EMD将区域Ⅲ中由环境温度变化所产生的MZI干涉光谱分解为本征模态函数(IMF),建立温度变化与IMF之间的关系,扩大对温度变化的动态测量范围,实现温度补偿。实验结果显示,传感器在1。333~1。370折射率范围内的灵敏度达到了2381。71 nm/RIU,在4。12~10。14的pH值范围内的灵敏度为-14。62 nm/pH,在20~80 ℃温度范围内的温度灵敏度为85。27 pm/℃,在海洋环境监测、生物化学检测等领域具有广泛的应用前景。
Optical Fiber Sensors for Simultaneous Detection of Refractive Index,pH,and Temperature Based on Empirical Mode Decomposition
Objective In recent years,with the improvement of sensor accuracy and performance requirements in biomedicine,chemical sensing,and environmental monitoring,the demand for multi-parameter simultaneous monitoring is growing.For example,in marine environmental monitoring,it is necessary to detect the refractive index,pH,and temperature simultaneously.However,most current sensors have complex structures,poor mechanical strength,and small dynamic measurement ranges,making it difficult to meet the simultaneous measurement needs in complex environments.Therefore,it is essential to develop a kind of optical fiber sensor with simple structures,high performance,and large measurement ranges,which can realize multi-parameter simultaneous detection in complex environments.We propose an optical fiber sensor based on surface plasmon resonance(SPR)and Mach-Zehnder interference(MZI)effects combined with empirical mode decomposition(EMD)to simultaneously detect the refractive index,pH,and temperature.Methods We combine the SPR and MZI effects in the multimode optical fiber-hollow core optical fiber-multimode optical fiber(MMF-HCF-MMF)structure with EMD to achieve simultaneous detection of the refractive index,pH,and temperature.First,the principles of the two effects are analyzed,the performance parameter formulas of SPR and MZI are derived,and simulation is adopted to verify the feasibility of the theory.Meanwhile,we analyze the principles and steps of EMD and its effectiveness in enhancing the free spectral range(FSR)of the interference spectrum.Then,an optical fiber sensor based on the MMF-HCF-MMF structure is fabricated,and the side of HCF is divided into region I and region Ⅱ by silver nanofilm and polyacrylic acid/chitosan(PAA/CS),which are employed to measure the refractive index and pH respectively.Additionally,the MZI interference spectrum generated by the ambient temperature change in the region-Ⅲ is decomposed into intrinsic mode functions(IMFs)via EMD to achieve temperature measurement.Finally,a refractive index,pH,and temperature experimental test platform is built to conduct performance testing on the system.Results and Discussions The Refractive index response of the sensor without a pH-sensitive film is first tested,and the corresponding refractive index sensitivity is 2680.26 nm/RIU(Fig.6).Secondly,the refractive index and pH sensing performances of the sensor are tested.The sensitivity of region I to the refractive index is 2381.71 nm/RIU[Fig.9(b)],and that of region Ⅱ to pH is-14.62 nm/pH[Fig.10(b)].Then,the effect of temperature on refractive index and pH detection is tested.The sensitivity to temperature in region I and region Ⅱ is obtained to be-0.14 nm/℃ and-0.17 nm/℃respectively[Fig.11(b)].To reduce the influence of temperature changes,we introduce EMD to obtain the sensitivity of region Ⅲ to temperature as 85.27 pm/℃[Fig.13(f)].Subsequently,the temperature compensation is realized by the sensing matrix,and the error analysis is performed via adopting the sensing matrix.The results show that the refractive index,pH,and temperature change errors are 2.5%,2.1%,and 1.8%respectively.Finally,the stability and repeatability of the sensor are verified.The experimental results indicate that the maximum sensitivity errors of refractive index,pH,and temperature are 68.34 nm/RIU,0.23 nm/pH,and 0.59 pm/℃,respectively.The sensor proposed in our study has better performance and lower cost than other sensors.Conclusions We propose and fabricate an optical fiber sensor based on SPR and MZI effects combined with EMD to detect the refractive index,pH and temperature simultaneously.The sensor adopts the structure of MMF-HCF-MMF,and divides the HCF into two independent sensing regions by silver nanofilm and polyacrylic acid/chitosan(PAA/CS)composites,which measure the refractive index and pH respectively.Meanwhile,the interference spectrum generated by MZI is decomposed into IMFs by EMD,and FSR is extended to realize temperature compensation.The experimental results show that the sensor has sensitivity of 2381.71 nm/RIU for the refractive index,-14.62 nm/pH for pH,and 85.27 pm/℃ for temperature.The proposed sensor not only shows high sensitivity and a simple fabrication process,but also has low cost and the ability to detect multiple parameters simultaneously.These characteristics make the sensor have great application potential in marine monitoring,biochemical analysis,and other fields.

surface plasmon resonanceMach-Zehnder interferometerempirical mode decompositionmulti-parameter sensing

闵洋、常建华、柯欣怡、吴新新

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南京信息工程大学电子与信息工程学院,江苏南京 210044

南京信息工程大学江苏省大气环境与装备技术协同创新中心,江苏南京 210044

表面等离子体共振 马赫-曾德尔干涉仪 经验模态分解 多参数传感

2024

光学学报
中国光学学会 中国科学院上海光学精密机械研究所

光学学报

CSTPCD北大核心
影响因子:1.931
ISSN:0253-2239
年,卷(期):2024.44(23)