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Stable and Highly Efficient Free-Space Optical Wireless Communication System Based on Polarization Modulation and In-Fiber Diffraction

机译:基于极化调制和光纤衍射的稳定和高效的自由空间光学无线通信系统

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The performance of free-space optical data transmission is severely deteriorated by the fluctuation of optical signal intensity, which is resulted from the bias drift of electro-optical modulation devices. In order to improve the performance of free-space optical communication systems, a bias-drift avoiding, beam steered free-space optical wireless communication system is presented based on polarization modulation for the first time to the best of our knowledge. An in-fiber diffraction device based on a 45° tilted fiber grating (TFG) serves simultaneously as an in-fiber polarizer, free-space light emitter, and beam steerer in the proposed communication system, which endows the proposed system with the merits of highly efficient, compact, stable and bias-drift free. The usage of 45° TFG has three benefits: 1), it realizes polarization modulation preventing bias-drift due to its polarization sensitive feature; 2), it enables stable and highly efficient in-fiber compact free-space light emitter; and 3) it accomplishes free-space beam steering due to its wavelength-depending diffraction characteristic. A 2.1 m free-space optical wireless data transmission has been demonstrated with a data rate of 4.8 Gbps per beam using 1.2 GHz bandwidth OFDM signals. This proposal prevents the bias drift issue and maintains high stability. Hence, it can be applied in some harsh situations and confidential data transmission fields.
机译:通过光信号强度的波动,自由空间光学数据传输的性能严重恶化,这是由电光调制装置的偏置漂移产生的。为了提高自由空间光通信系统的性能,基于我们的知识首次,基于偏振调制来呈现偏差避免避免,光束转向自由空间光学无线通信系统。基于45°倾斜的光纤光栅(TFG)的纤维衍射装置同时用作纤维的偏振器,自由空间发光器和梁转带,在所提出的通信系统中,赋予所提出的系统的优点自由高效,紧凑,稳定,偏向无偏差。使用45°TFG的使用具有三个优点:1),它实现了由于其极化敏感特征而导致的偏振调制防止偏差; 2),它可以实现稳定且高效的光纤紧凑空间光发射器; 3)它由于其波长差异特性而实现了自由空间波束转向。使用1.2 GHz带宽OFDM信号,已通过4.8 Gbps的数据速率进行了2.1米自由空间光学无线数据传输。该提议可防止偏置漂移问题并保持高稳定性。因此,它可以应用于一些苛刻的情况和机密数据传输领域。

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