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使用自由曲面透镜的改进型光学相机通信系统。

Improved optical camera communication systems using a freeform lens.

作者信息

Liu Ziwei, Yang Lin, Yang Yanbing, Wu Rengmao, Zhang Lei, Chen Liangyin, Wu Die, She Jun

出版信息

Opt Express. 2021 Oct 11;29(21):34066-34076. doi: 10.1364/OE.440342.

Abstract

Optical camera communication (OCC) systems, which utilize image sensors embedded in commercial-off-the-shelf devices to detect time and spatial variations in light intensity for enabling data communications, have stirred up researchers' interest. Compared to a direct OCC system whose maximum data rate is strongly determined by the LED source size, a reflected OCC system can break that limitation since the camera captures the light rays reflecting off an observation plane (e.g., a wall) instead of those light rays directly emanated from the light source. However, the low signal-to-noise ratio caused by the non-uniform irradiance distribution produced by LED luminaire on the observation plane in current reflected OCC systems cannot be avoided, hence low complexity and accurate demodulation are hard to achieve. In this paper, we present a FreeOCC system, which employs a dedicatedly tailored freeform lens to precisely control the propagation of modulated light. A desired uniform rectangular illumination is produced on the observation plane by the freeform lens, yielding a uniform grayscale distribution within the received frame captured by the camera in the proposed FreeOCC system. Then, the received signal can be easily demodulated with high accuracy by a simple thresholding scheme. A prototype of the FreeOCC system demonstrates the high performance of the proposed system, and two pulse amplitude modulation schemes (4-order and 8-order) are performed. By using the freeform lens, the packet reception rate is increased by 35% and 32%, respectively; the bit error rate is decreased by 72% and 59%, respectively, at a transmission frequency of 5 kHz. The results clearly show that the FreeOCC system outperforms the common reflected OCC system.

摘要

光学相机通信(OCC)系统利用嵌入现成商用设备中的图像传感器来检测光强的时间和空间变化以实现数据通信,这引起了研究人员的兴趣。与最大数据速率很大程度上由LED光源尺寸决定的直接OCC系统相比,反射式OCC系统可以突破这一限制,因为相机捕捉的是从观察平面(如墙壁)反射的光线,而不是直接从光源发出的光线。然而,当前反射式OCC系统中LED灯具在观察平面上产生的非均匀辐照度分布所导致的低信噪比无法避免,因此难以实现低复杂度和精确解调。在本文中,我们提出了一种FreeOCC系统,该系统采用专门定制的自由曲面透镜来精确控制调制光的传播。自由曲面透镜在观察平面上产生所需的均匀矩形照明,在所提出的FreeOCC系统中,相机捕获的接收帧内会产生均匀的灰度分布。然后,通过简单的阈值方案可以轻松地高精度解调接收信号。FreeOCC系统的原型展示了所提系统的高性能,并执行了两种脉冲幅度调制方案(4阶和8阶)。通过使用自由曲面透镜,在5 kHz的传输频率下,分组接收率分别提高了35%和32%;误码率分别降低了72%和59%。结果清楚地表明,FreeOCC系统优于普通的反射式OCC系统。

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