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Optical wireless communication using camera and RGB display

机译:使用相机和RGB显示光无线通信

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In this paper, a theoretical framework for Optical Wireless Communication using RGB color model with computer monitor display and digital camera is proposed. The motivation is to find a cheaper alternative to physical network switches and wired and optical cables in communication networks that can be leveraged for computer clusters, thus reducing time and costs for purchase, setup, maintenance, power consumption and cooling. Also, providing better data transfer rates, scalability and band width conservation. The framework is distinguished from related work by the use of RGB for data encoding at various bit-depths. Greater data transfer rates than existing Optical Wireless Communication systems are possible. A computer monitor displays a grid of changing colors controlled by a transmitting host. The color in a grid cell represents one or more data bits as per the RGB codes used. The RGB codes can be computed by logically partitioning the RGB cube, a geometrical representation of the RGB model. A camera on a receiving host, samples the colors to obtain the data bits. Mathematical expressions are derived to compute the RGB codes and mappings to data bits. The upper bound of the data rate is derived and compared with the well-known Shannon communication theorem. The framework is extended to include an array of digital cameras for parallel data copy in a computer cluster and the data rate is determined. Theoretically, the data rate can increase beyond the Gigabit/second realm, and into Terabit/second realm.
机译:在本文中,提出了使用具有计算机监视器显示和数码相机的RGB颜色模型的光无线通信的理论框架。动机是在可以利用计算机集群的通信网络中找到更便宜的替代物,可以利用计算机集群,从而减少购买,设置,维护,电力消耗和冷却的时间和成本。此外,提供更好的数据传输速率,可伸缩性和带宽节约。该框架通过使用RGB在各种比特深度的数据编码的数据中与相关工作区分开。比现有的光学无线通信系统更大的数据传输速率是可能的。计算机监视器显示由发送主机控制的颜色的更改的网格。网格单元中的颜色根据所使用的RGB代码表示一个或多个数据位。可以通过逻辑地划分RGB多维数据集来计算RGB代码,RGB模型的几何表示。接收主机上的相机,采样颜色以获取数据位。导出数学表达式以将RGB代码和映射计算到数据比特。衍生数据速率的上限,并与众所周知的香农通信定理进行比较。该框架扩展到包括计算机集群中的并行数据副本的数码相机阵列,并确定数据速率。从理论上讲,数据速率可以超出千兆/秒的境界,并进入T比/秒领域。

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