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1.
用双周期光纤光栅实现温度和应变的同时测量   总被引:1,自引:0,他引:1  
介绍了光纤光栅传感器的一般原理,分析了长周期光纤光栅和Bragg光纤光栅的应变和温度响应机理。结果表明,长周期光纤光栅和Bragg光纤光栅的温度和应变灵敏度不仅与纤芯参数和光栅周期有关,还依赖于包层参数。在同一根光纤上先后写入长周期光纤光栅、Bragg光纤光栅,利用长周期光纤光栅和Bragg光纤光栅基模与包层模耦合时温度和应变灵敏度的不同,实现应变和温度的同时测量。  相似文献   

2.
在少模光纤中写制的纤芯LP_(01)模式向纤芯LP_(11)模式耦合的长周期光纤光栅具有双谐振耦合现象,且该双谐振耦合峰随着温度或应变的增加向相反的波段漂移,从理论和实验上揭示了该现象产生的机理,并基于该现象及特性设计了温度、应变双参量传感器。与传统的基于纤芯基模与包层模耦合的长周期光纤光栅传感器相比,该传感器具有折射率不敏感、光谱稳定、灵敏度高等优势。  相似文献   

3.
长周期光纤光栅温度稳定性分析及其改善   总被引:5,自引:0,他引:5  
利用模式耦合理论推导出长周期光纤光栅(LPG)温度特性的一般关系式;通过测试周期为400~600μm的长周期光纤光栅的温度特性,确定了芯内导模与被耦合的不同包层模间的热光系数差,并结合长周期光栅温度特性关系式总结出长周期光栅温度灵敏度与光栅周期和耦合包层模阶次的对应关系;在理论与实验的基础上,提出了改善长周期光栅温度稳定性的方法。  相似文献   

4.
高频CO2激光脉冲写入的超长周期光纤光栅   总被引:1,自引:0,他引:1  
朱涛  饶云江  莫秋菊 《光子学报》2005,34(11):1697-1700
研究了周期为3 mm的超长周期光纤光栅(ULPFG)各谐振峰的温度和应变特性,报道了用高频CO2激光脉冲写入的周期可达数毫米的包层折变非对称分布的ULPFG.该光栅各谐振峰由不同阶次闪耀模与纤芯基模同向耦合而成,理论和实验表明不同阶次谐振峰对外界参数如温度、应变等变化具有不同的灵敏度,因此这种ULPFG可望用于多参数同时测量中.  相似文献   

5.
利用长周期光纤光栅(LPFG)的双峰谐振效应,结合LPFG传感器工作于近相位匹配转折点(PMTP)附近的高灵敏度,提出了一种新型的长周期光纤光栅应变传感器的设计方法。利用LPFG相位匹配条件,分析了长周期光纤光栅近PMTP附近的双峰谐振特性、应变传感特性,发现双峰波长间距对微小应变具有很高的响应度和线性度。进一步讨论了光栅结构参数和包层直径对双峰LPFG应变灵敏度的影响,发现光栅周期对该传感器的应变灵敏度、线性度和应变测量范围具有很大的影响;光栅长度对谐振峰高度和宽度有较大影响,直接关系到传感器寻峰精度;通过增大包层直径,可以进一步增大应变灵敏度。结果表明,通过选取适合的光栅结构参量和包层半径,该传感器应变灵敏度可比一般长周期光纤光栅应变传感器的应变灵敏度提高2个数量级。这为设计高应变灵敏度双峰谐振LPFG应变传感器提供了结构优化的理论支持。  相似文献   

6.
长周期光纤光栅折射率传感器的结构优化   总被引:2,自引:1,他引:1  
为了提高长周期光纤光栅对环境介质折射率的传感灵敏度,提出一种长周期光纤光栅的周期和包层半径的结构优化.基于长周期光纤光栅的耦合模理论,分析了长周期光纤光栅的周期和包层半径的大小分别与环境介质折射率传感灵敏度的关系,讨论了长周期光纤光栅的周期和包层半径对折射率传感的影响以及控制光栅周期与包层半径对折射率传感的重要性.为使...  相似文献   

7.
秦莉  韦占雄 《光学学报》2000,20(2):90-194
利用模式耦合理率推导出长周期光纤光栅(LPG)温度特性的一般关系式;通过测试周期为400 ̄600μm的长周期光纤光栅的温度特性,确定了芯内导模与被耦合的不同包层模间的热光系数差,并结合长周期光栅温度特性关系式总结出长周期光栅温度灵繁度与光栅周期和耦合包层模阶次的对应关系;在理论与实验的基础上,提出了改善长周期光栅温度稳定性的方法。  相似文献   

8.
光纤Bragg光栅应变、温度交叉敏感问题的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
王宏亮  张晶  乔学光  王瑜 《应用光学》2008,29(5):804-807
解决应变和温度的交叉敏感,实现应变和温度同时测量一直是光纤光栅传感器研究的关键问题。从应变和温度交叉敏感的物理机制出发,较为全面地介绍了几种主要解决方案:双波长矩阵法、2个包层直径不同的FBG法、啁啾光栅法等。并且基于双波长矩阵法,提出了一种基于管式弹性应变敏感元件的光纤光栅传感器结构,很好地实现了温度150℃,压力20MPa的同时区分测量,其温度灵敏度为0.02nm/℃。解决了温度和应变同时区分测量这一技术难题。  相似文献   

9.
为了提高长周期光纤光栅对环境介质折射率的传感灵敏度,提出一种长周期光纤光栅的周期和包层半径的结构优化.基于长周期光纤光栅的耦合模理论,分析了长周期光纤光栅的周期和包层半径的大小分别与环境介质折射率传感灵敏度的关系,讨论了长周期光纤光栅的周期和包层半径对折射率传感的影响以及控制光栅周期与包层半径对折射率传感的重要性.为使优化的长周期光纤光栅具有实用性,谐振波长设计在1.55 μm的常规波长范围,经过多次摸拟实验,提出最佳优化参量为:Λ=380 μm,rcl=17 μm,对环境介质折射率从1.26~1.38不同值的实验测试,折射率传感灵敏度达到0.000 12,长周期光纤光栅的结构优化获得理想的预期效果.  相似文献   

10.
提出了一种光纤横截面折射率变化呈旋转非对称变化的长周期光纤光栅(R-LPFG) 结构,并利用多层圆波导理论和横截面折射率离散分析方法,结合模式耦合方程组和数值求解方法理论分析了这种光栅的模式耦合特征.理论分析表明R-LPFG纤芯基模主要与一阶非对称包层模发生耦合,当光栅旋转度逐渐变大时,R-LPFG基模会与一阶非对称包层模的奇模和偶模同时发生耦合,这就会使原来单一的谐振峰逐渐分裂成双峰,这是常规光栅类型所不具有的透射谱特征.由于R-LPFG的双峰来自同一对耦合模式,它们对温度的响应很相似,因此可利用双峰间距来进行无需温度补偿的扭曲、应变等物理量的测量.最后利用高频CO2激光脉冲写入法制作了这种光栅,并实验研究了这类光栅的传输谱演变特征,实验结果和理论分析一致.可以预见,这类光栅在光纤传感或通信中将具有较大的潜在应用价值.  相似文献   

11.
金娃  张林克  张祥  徐铭  毕卫红  齐跃峰 《中国物理 B》2022,31(1):14207-014207
We report the fabrication of long period gratings in fluid-cladding microfibers by directly focusing a femtosecond laser beam on the microfibers surface to induce periodical modification a long one side of the microfibers.A long period grating is fabricated in a water-cladding microfiber with a diameter of~5μm,which demonstrates a resonant attenuation of 28.53 dB at wavelength of 1588.1 nm with 10 pitches.When water cladding is changed to be refractive index oil of n=1.33 and alcohol solution with concentration of 5%,the resonance wavelength shifts to 1575.1 nm with resonant attenuation of 24.91 dB and 1594.1 nm with resonant attenuation of 35.9 dB,respectively.The long period grating demonstrates different temperature sensitivities of-0.524 nm/℃,-0.767 nm/℃and-1.316 nm/℃for water,alcohol solution and refractive index oil cladding microfibers,respectively,which means the alterable liquid cladding allows the availability of tunable wavelength and sensitivity.The fluid-cladding protects the microfibers from external disturbance and contamination and allows more flexibility in controlling the transmission property and sensing characteristics of long period gratings,which can be used as fiber devices and sensors for chemical,biological,and environmental applications.  相似文献   

12.
长周期光纤光栅应变和温度传感灵敏度研究   总被引:5,自引:1,他引:4  
基于模耦合理论,从长周期光纤光栅在外加轴向应变或环境温度变化时可能出现的弹性形变、弹光效应、热光效应、热膨胀效应及波导效应入手,推导了描述其轴向应变和温度灵敏度的一般性公式.利用数值方法研究了光栅周期、耦合模式的阶次、弹光系数及热光系数对灵敏度的影响.结果表明:在相同条件下,增大光栅周期将是提高灵敏度的有效手段之一;低次模较高次模的耦合具有更高的灵敏度;包层与芯区的弹光系数(热光系数)相等时,波长漂移量很小且与谐振波长值有简单的正比关系.  相似文献   

13.
热光系数与长周期光纤光栅的温度灵敏度研究   总被引:10,自引:0,他引:10  
利用受温度影响的光纤的本征方程和相位匹配条件,从理论上研究了长周期光纤光栅(LPFGs)的温度响应特性,给出了LPFGs的温度灵敏度的解析表达式。对利用低模序包层模的LPFG进行了实验研究。结果表明,利用不同包层模的LPFGs具有不同的温度灵敏度。分析了光纤的材料热光系数和模的热光系数的差别。单模光纤导模的热光系数接近纤芯的材料热光系数,而包层模的热光系数比包层的材料热光系数大,模序越大,其值越大。适当调整纤芯和包层的热光系数,并选用不同的包层模,可以得到对温度灵敏或不灵敏的LPFGs。  相似文献   

14.
In this work, a simple sensing head geometry using fibre Bragg gratings for strain and temperature discrimination is presented. The sensing head geometry consists in one fibre with two FBGs bonded with a dummy optical fibre. Due to this new configuration, different strain sensitivities of the two FBGs are obtained (≈65% difference), while temperature sensitivities remain the same. This difference in strain sensitivities is substantially larger than in all previously reported dual grating sensors. The obtained experimental errors were ±13.48 με and ±2.44 °C, respectively. It is also demonstrated that this new configuration can be used as a temperature-independent strain sensor.  相似文献   

15.
A CO2 laser and point-by-point method are used for fabricating step-changed period chirped long-period fiber gratings (LPFG). Several types of period chirped LPFGs have been demonstrated, such as, linearly chirp, peak-shape chirp, and cascaded linearly chirp. Unlike uniform LPFGs, the spectrum change such as multiple attenuation peaks, broader spectrum can be seen in these chirp gratings, and the spectral shape can be controlled by the grating period. Especially, the cascaded linearly chirped LPFGs performs a multi-peak as interference between the core mode and cladding mode, which can be used as multi-wavelength filters in fiber optic communication and fiber optic sensors. Also, a linear tuning range of 1.6 nm with -0.559 pm/με tuning rate is achieved in these types of devices by applying an axial strain.  相似文献   

16.
Optical fiber gratings have developed into a mature technology with a wide range of applications in various areas, including physical sensing for temperature, strain, acoustic waves and pressure. All of these applications rely on the perturbation of the period or refractive index of a grating inscribed in the fiber core as a transducing mechanism between a quantity to be measured and the optical spectral response of the fiber grating. This paper presents a relatively recent variant of the fiber grating concept, whereby a small tilt of the grating fringes causes coupling of the optical power from the core mode into a multitude of cladding modes, each with its own wavevector and mode field shape. The main consequence of doing so is that the differential response of the modes can then be used to multiply the sensing modalities available for a single fiber grating and also to increase the sensor resolution by taking advantage of the large amount of data available. In particular, the temperature cross‐sensitivity and power source fluctuation noise inherent in all fiber grating designs can be completely eliminated by referencing all the spectral measurements to the wavelength and power level of the core mode back‐reflection. The mode resonances have a quality factor of 105, and they can be observed in reflection or transmission. A thorough review of experimental and theoretical results will show that tilted fiber Bragg gratings can be used for high resolution refractometry, surface plasmon resonance applications, and multiparameter physical sensing (strain, vibration, curvature, and temperature).  相似文献   

17.
We report an investigation of the dependence of the temperature and strain coefficients on the grating type for fiber Bragg gratings that are UV inscribed in B/Ge-codoped fiber with and without hydrogenation. The results reveal that all types of grating exhibit similar strain sensitivities but markedly different temperature sensitivities, greater for gratings inscribed in hydrogen-free rather than hydrogenated fiber and substantially less in type IA gratings than all others. The sensitivity characteristics of these gratings have been used to implement a new type of dual-grating sensor for simultaneous measurement of temperature and strain that has properties superior to those of previously reported structures.  相似文献   

18.
光纤光栅温度与轴向应变响应机制分析   总被引:4,自引:0,他引:4  
孔梅  石邦任 《光子学报》2001,30(2):188-191
本文对温度和轴向应变对长周期光纤光栅和Bragg光纤光栅耦合波长的影响机制作出分析,通过有代表性的举例计算数值给出了各因素对耦合波长的影响,指出轴向应变对耦合波长的影响除了来自光弹性效应带来的光纤折射率的改变外,光纤半径的变化,特别是光栅周期的改变也起重要作用.对比分析找到了长周期光纤光栅与Bragg光纤光栅温度,应变响应系数数量级异同的原因.  相似文献   

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