RESEARCH OF PARAMETERS OF FIBER-OPTICAL MEASURING SYSTEMS

W. Wójcik, A. Kalizhanova, G. Kashaganova, A. Kozbakova, Zhalau Aitkulov, Zhassulan Orazbekov
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引用次数: 3

Abstract

At present there exist a lot of technical devices, the failure of which can be connected not only with huge financial losses, but with the treat to the environment as well. Therefore, an important problem is the effective devices conditions diagnostics, including electronic components and check of their operation. Timely faults detecting allows introducing the prevention measures and avoiding serious consequences. Fiber-optic sensors have several advantages, more important of which include the immunity to electromagnetic disturbances, little weight and possibility to be included into the structure being measured. The most perspective are the sensors based on the Bragg fiber gratings. Bragg fiber gratings have several advantages, for instance, they allow creating the distributed measuring massifs, which contain several sensors. As well, they are insensitive to the optic power source vibrations. Variety of using the fiber sensors based on the Bragg fiber gratings has led to producing the Bragg fiber gratings with different spectral characteristics. Homogeneous Bragg fiber gratings have the spectra with solid side lobes, which can influence at the temperature sensor processing characteristics. To level the side lobes there is applied the apodization method, which is one of the means to affect the spectral form. The article herein considers the issues of the Bragg fiber gratings mathematical and computer modeling using the transfer matrix method. Transfer matrix method allows defining the optical components spectral characteristics based on the bound modes theory and description of electromagnetic wave, passing through an optic fiber. In the article there have been analyzed the Bragg fiber gratings in compliance with spectral features, such as transmission and reflectance spectra. As well, there has been carried out the experiment with influence of various parameters at the Bragg fiber gratings spectral characteristics. There have been studied the Bragg fiber gratings spectral features and selected the grating optimal parameters for designing the fiber-optic sensors based on the Bragg fiber gratings.
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光纤测量系统参数的研究
目前存在着大量的技术设备,这些设备的故障不仅会造成巨大的经济损失,而且会对环境造成严重的危害。因此,一个重要的问题是有效的设备状态诊断,包括电子元件及其运行的检查。及时发现故障,引入预防措施,避免严重后果。光纤传感器具有许多优点,其中最重要的是具有抗电磁干扰、重量小、可嵌入被测结构等优点。其中最有前途的是基于布拉格光纤光栅的传感器。布拉格光纤光栅有几个优点,例如,它允许创建包含多个传感器的分布式测量块。同时,它们对光电源的振动不敏感。基于Bragg光纤光栅的光纤传感器的多种应用导致了具有不同光谱特性的Bragg光纤光栅的产生。均匀Bragg光纤光栅具有固体边瓣的光谱,它会影响温度传感器的处理特性。为了使旁瓣调平,采用了影响谱形的手段之一——去尖化法。本文讨论了用传输矩阵法对布拉格光纤光栅进行数学和计算机建模的问题。传输矩阵法允许根据束缚模理论和描述通过光纤的电磁波来定义光学元件的光谱特性。本文对布拉格光纤光栅的透射光谱和反射光谱等光谱特征进行了分析。此外,还进行了各种参数对布拉格光纤光栅光谱特性影响的实验。研究了布拉格光纤光栅的光谱特性,选择了光栅的最优参数,设计了基于布拉格光纤光栅的光纤传感器。
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
40
审稿时长
10 weeks
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