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A new technique to monitor the long-term stability of an optoelectronic oscillator

机译:一种监测光电振荡器长期稳定性的新技术

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The main advantage of an optoelectronic oscillator (OEO) is the ability to synthesize directly very high spectral purity frequency in microwave domain. Beside applications in radar, telecommunication and satellite systems, OEO can also be used in sensor applications such as refractive index or distance measurements. However, the long-term stability of the OEO is easily affected by ambient environment variations. The optical fiber loop effective refractive index varies corresponding to its surrounding temperature changes. Consequently, it makes the optical transmission path inside the fiber loop differ from the initial state, leading to oscillation frequency changes. To stabilize the single loop OEO, it is essential to keep its high Q elements in a well-controlled thermal box as much as possible. Unfortunately, in the real implementation condition, this requirement is difficult to be satisfied. In this paper, we present a new technique to estimate the oscillation frequency variation under the room temperature by using a vector network analyzer (VNA). Experimental results show a good correlation between OEO oscillation frequency drift and the phase measured by the VNA. This technique can be implemented to apply corrections when using the OEO as a distance variation or a refractive index measurement tool. We also tracked the temperature of the fiber loop at the same time with the VNA-based experiment to compare two correlations of temperature and phase with OEO oscillation frequency.
机译:光电振荡器(OEO)的主要优点是能够在微波结构域中直接基于非常高的光谱纯度频率。除了雷达,电信和卫星系统中的应用,OEO还可用于传感器应用,例如折射率或距离测量。然而,OEO的长期稳定性容易受环境环境变化的影响。光纤环路有效折射率变化对应于其周围温度变化。因此,它使光纤环内的光传输路径与初始状态不同,导致振荡频率变化。为了稳定单环OEO,必须尽可能地将其高Q元素保持在良好控制的热箱中。不幸的是,在真实的实现条件下,难以满足这一要求。在本文中,我们通过使用矢量网络分析器(VNA)来提出一种估计室温下的振荡频率变化的新技术。实验结果表明OEO振荡频率漂移与VNA测量的相位之间的良好相关性。可以实现该技术以在使用OEO作为距离变化或折射率测量工具时应用校正。我们还通过基于VNA的实验同时跟踪光纤环的温度,以比较与OEO振荡频率的温度和相的两个相关性。

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