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Vision communication based on LED array and Imaging sensor

机译:基于LED阵列和成像传感器的视觉通讯

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In this paper, we propose a brand new communication concept, called as "vision communication" based on LED array and image sensor. This system consists of LED array as a transmitter and digital device which include image sensor such as CCD and CMOS as receiver. In order to transmit data, the proposed communication scheme simultaneously uses the digital image processing and optical wireless communication scheme. Therefore, the cognitive communication scheme is possible with the help of recognition techniques used in vision system. By increasing data rate, our scheme can use LED array consisting of several multi-spectral LEDs. Because arranged each LED can emit multi-spectral optical signal such as visible, infrared and ultraviolet light, the increase of data rate is possible similar to WDM and MIMO skills used in traditional optical and wireless communications. In addition, this multi-spectral capability also makes it possible to avoid the optical noises in communication environment. In our vision communication scheme, the data packet is composed of Sync, data and information data. Sync, data is used to detect the transmitter area and calibrate the distorted image snapshots obtained by image sensor. By making the optical rate of LED array be same with the frame rate (frames per second) of image sensor, we can decode the information data included in each image snapshot based on image processing and optical wireless communication techniques. Through experiment based on practical test bed system, we confirm the feasibility of the proposed vision communications based on LED array and image sensor.
机译:在本文中,我们提出了一种全新的通信概念,称为基于LED阵列和图像传感器的“视觉通信”。该系统由作为发射器的LED阵列和包括图像传感器(如CCD和CMOS)的数字设备作为接收器组成。为了发送数据,提出的通信方案同时使用数字图像处理和光学无线通信方案。因此,借助视觉系统中使用的识别技术,可以实现认知交流方案。通过提高数据速率,我们的方案可以使用由几个多光谱LED组成的LED阵列。由于布置的每个LED可以发射多光谱光信号,例如可见光,红外光和紫外光,因此类似于传统光学和无线通信中使用的WDM和MIMO技术,可以提高数据速率。另外,这种多光谱能力还可以避免通信环境中的光噪声。在我们的视觉通信方案中,数据包由同步,数据和信息数据组成。同步数据用于检测发射器区域并校准由图像传感器获得的失真图像快照。通过使LED阵列的光学速率与图像传感器的帧速率(每秒帧)相同,我们可以基于图像处理和光学无线通信技术对每个图像快照中包含的信息数据进行解码。通过基于实际测试平台系统的实验,我们确认了基于LED阵列和图像传感器的视觉通信的可行性。

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