Investigation of the influence of broadband mechanical disturbances on the quality of recording interference patterns of GTE-wheel oscillations using a digital speckle pattern interferometer

A. Ivchenko, A. I. Safin
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Abstract

The effect of broadband disturbances on the operation of a noise-immune digital speckle pattern interferometer with a continuous wave laser emitter and a diffuse-scattering element arranged in front of an oscillating turbine wheel has been studied. Visibility dependences of the recorded interference patterns were obtained under the action of different types of artificially created disturbances. It is shown that the most dangerous mechanical disturbances for the operation of a speckle pattern interferometer are periodic noise and pink noise, whereas white noise and natural vibrations of the floor in the room where the experimental setup was accommodated do not significantly influence the quality of the information recorded by the interferometer. This article analyzes the influence of the mechanical properties of the diffuse-scattering element arranged in the speckle pattern interferometer on the quality of the obtained interference patterns. A relationship between the growth of forced tangential oscillations of the diffuse-scattering element and a decrease in the contrast of interference fringes was noted. In this case, an increase in the thickness of the organic glass plate of the diffuse-scattering element up to 8 mm leads to the neutralization of the pink noise action on the speckle pattern interferometer operation. At the same time, the effect of periodic noises decreases the contrast of interference patterns recorded for the cases of using 5 mm and 8 mm thick organic glass plates.
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利用数字斑点图干涉仪研究宽带机械干扰对 GTE 轮振动干涉图记录质量的影响
研究了宽带干扰对带有连续波激光发射器和漫散射元件的抗噪数字斑点图干涉仪运行的影响。在不同类型的人为干扰作用下,获得了记录的干涉图案的可见度相关性。结果表明,对斑点图干涉仪的运行最危险的机械干扰是周期性噪声和粉红噪声,而白噪声和实验装置所在房间地板的自然振动对干涉仪记录的信息质量影响不大。本文分析了斑点图干涉仪中扩散散射元件的机械特性对所获得干涉图案质量的影响。研究发现,扩散散射元件受迫切向振荡的增长与干涉条纹对比度的下降之间存在关系。在这种情况下,将扩散散射元件的有机玻璃板厚度增加到 8 毫米,可以中和粉红噪声对斑点图干涉仪运行的影响。同时,在使用 5 毫米和 8 毫米厚有机玻璃板的情况下,周期性噪声的影响降低了所记录干涉图案的对比度。
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