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Undersampled differential phase shift on-off keying for optical camera communications with phase error detection

机译:欠采样差分相移开关键控,用于具有相位误差检测功能的光学相机通信

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This paper introduces the design and implementation of an optical camera communication (OCC) system. Phase uncertainty and phase slipping caused by camera sampling are the two major challenges for OCC. In this paper, we propose a novel modulation scheme to overcome these problems. The undersampled differential phase shift on-off keying is capable of encoding binary data bits without exhibiting any flicker to human eyes. The phase difference between two consecutive samples conveys one-bit information which can be decoded by a low frame rate camera receiver. Error detection techniques are also introduced to enhance the reliability of the system. Furthermore, we present the hardware and software design of the proposed system. This low-cost communication system has been implemented with a Xilinx FPGA and a Logitech commercial camera. Experimental results demonstrate that a bit-error rate of 10 can be achieved with 7.15 microwatts received signal power over a link distance of 15 centimeters.
机译:本文介绍了光学相机通信(OCC)系统的设计和实现。摄像机采样引起的相位不确定性和相位滑移是OCC的两个主要挑战。在本文中,我们提出了一种新颖的调制方案来克服这些问题。欠采样的差分相移开关键控能够对二进制数据位进行编码,而不会出现人眼闪烁的现象。两个连续样本之间的相位差传达的是一位信息,该信息可以由低帧频相机接收器解码。还引入了错误检测技术以增强系统的可靠性。此外,我们介绍了所提出系统的硬件和软件设计。该低成本通信系统已通过Xilinx FPGA和Logitech商业相机实现。实验结果表明,在15厘米的链路距离上,接收到的7.15微瓦信号功率可以实现10的误码率。

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