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High Accuracy Homodyne Interferometric Method for Wide Dynamic Range Applications

机译:高精度型型宽动态范围应用的干涉方法

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摘要

In this paper a new method for the detection of optical phase in passive homodyne interferometers, with high accuracy and wide dynamic range is presented. Unlike the traditional and more recent methods, which use between 3 and 6 harmonic components to calculate the modulation index, the proposed method uses only 2 harmonic components. Because of this, the method has higher accuracy in the presence of noise compared to other methods known in the literature. Further, the method has the advantage of not requiring knowledge of the phase of the excitation signal. The numerical implementation is simple, since it uses a 3rd order polynomial fit for the calculation of the modulation index. For the experimental verification of the method, a configuration based on an unbalanced Mach-Zehnder interferometer (MZI) was used, which resulted in a dynamic range for the modulation index from 8.38 to 16.76 rad. It is important to note that these limits can be easily expanded by means of adaptations of the optical and electronic setup depending on the characteristics of the excitation signal. The proposed method can be used in several applications, such as pressure measurements, vibration, displacement, etc.
机译:在本文中,介绍了一种新的无源岩体干涉仪中光学相的新方法,具有高精度和宽动态范围。与传统和更新的方法不同,在3到6个谐波元件之间计算调制指数之间,所提出的方法仅使用2个谐波分量。因此,与文献中已知的其他方法相比,该方法在噪声存在下具有更高的精度。此外,该方法具有不需要了解激励信号的相位的优点。数值实现很简单,因为它使用3rd阶多项式拟合来计算调制索引。对于该方法的实验验证,使用基于不平衡Mach-Zehnder干涉仪(MZI)的配置,从8.38到16.76 rad的调制指数导致动态范围。重要的是要注意,根据激励信号的特性,可以通过光学和电子设置的适应来容易地扩展这些限制。所提出的方法可用于若干应用,例如压力测量,振动,位移等。

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