Opt Express. 2023 May 22;31(11):18670-18679. doi: 10.1364/OE.492547.
We put forward and demonstrate a light-diffusing fiber equipped unmanned-aerial-vehicle (UAV) to provide a large field-of-view (FOV) optical camera communication (OCC) system. The light-diffusing fiber can act as a bendable, lightweight, extended and large FOV light source for the UAV-assisted optical wireless communication (OWC). During UAV flying, the light-diffusing fiber light source could be tilted or bended; hence, offering large FOV as well as supporting large receiver (Rx) tilting angle are particularly important for the UAV-assisted OWC systems. To improve the transmission capacity of the OCC system, one method based on the camera shutter mechanism, which is known as rolling-shuttering is utilized. The rolling-shuttering method makes use of the feature of complementary-metal-oxide-semiconductor (CMOS) image sensor to extract signal pixel-row by pixel-row. The data rate can be significantly increased since the capture start time for each pixel-row is different. As the light-diffusing fiber is thin and occupies only a few pixels in the CMOS image frame, Long-short-term-memory neural-network (LSTM-NN) is used to enhance the rolling-shutter decoding. Experimental results show that the light-diffusing fiber can satisfactorily act as an "omnidirectional optical antenna" providing wide FOVs and 3.6 kbit/s can be achieved, accomplishing the pre-forward error correction bit-error-rate (pre-FEC BER = 3.8 × 10).
我们提出并演示了一种配备漫射光纤的无人机 (UAV),以提供大视场 (FOV) 的光相机通信 (OCC) 系统。漫射光纤可用作无人机辅助光无线通信 (OWC) 的可弯曲、轻量级、扩展和大 FOV 光源。在无人机飞行过程中,漫射光纤光源可以倾斜或弯曲;因此,为无人机辅助 OWC 系统提供大 FOV 以及支持大接收器 (Rx) 倾斜角度尤为重要。为了提高 OCC 系统的传输容量,一种基于相机快门机制的方法,即滚动快门,被利用。滚动快门方法利用互补金属氧化物半导体 (CMOS) 图像传感器的特性逐行提取信号像素行。由于每个像素行的捕获起始时间不同,因此数据速率可以显著提高。由于漫射光纤很细,在 CMOS 图像帧中仅占几个像素,因此使用长短时记忆神经网络 (LSTM-NN) 来增强滚动快门解码。实验结果表明,漫射光纤可以很好地充当“全向光学天线”,提供大 FOV,实现 3.6 kbit/s 的数据速率,达到前向纠错位误码率 (pre-FEC BER=3.8×10)。