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Multilevel 2D Bar Codes: Towards High Capacity Storage Modules for Multimedia Security and Management

机译:多层2D条码:迈向用于多媒体安全和管理的大容量存储模块

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In this paper, we deal with the design of high-rate multilevel two-dimensional (2D) bar codes for the print-and-scan channel. Firstly, we derive an upper bound on the maximum achievable rate of these codes by studying an inter-symbol interference (ISI) free, perfectly synchronized, and noiseless print-and-scan channel, in which the printer device uses halftoning to simulate multiple gray levels. Secondly, we briefly review three state-of-the-art coded modulation techniques for the additive white Gaussian noise channel (AWGN) in the high signal-to-noise (SNR) ratio regime, namely, multilevel coding with multistage decoding (MLC/MSD), multilevel coding with parallel independent decoding (MLC/PID), and bit-interleaved coded modulation (BICM). Thirdly, we present a new model of the print-and-scan channel specifically adapted to the multilevel 2D bar code application. This model, inspired by our experimental work, assumes no ISI and perfect synchronization, but independence between the channel input and the noise is not supposed. We study the problem of finding the information capacity of our channel model and extend the theory of MLC/MSD tc this type of channels. Finally, we present experimental results confirming the validity of our channel model, and showing that multilevel 2D bar codes using MLC/MSD can reliably achieve the high-rate storage requirements of many multimedia security and data management applications.
机译:在本文中,我们处理用于打印和扫描通道的高速多层二维(2D)条形码的设计。首先,我们通过研究无符号间干扰(ISI),完全同步且无噪声的打印和扫描通道来推导这些代码的最大可达到速率的上限,其中打印机设备使用半色调来模拟多种灰度水平。其次,我们简要回顾了在高信噪比(SNR)体制下用于加性高斯白噪声信道(AWGN)的三种最新编码调制技术,即带多级解码的多级编码(MLC / MSD),具有并行独立解码(MLC / PID)的多级编码和位交错编码调制(BICM)。第三,我们提出了一种特别适用于多层2D条形码应用程序的打印和扫描通道的新模型。该模型受我们的实验工作启发,没有ISI和完美的同步,但是没有假定通道输入和噪声之间的独立性。我们研究了寻找我们的信道模型的信息容量的问题,并扩展了这种类型的信道的MLC / MSD理论。最后,我们提供的实验结果证实了我们的信道模型的有效性,并表明使用MLC / MSD的多级二维条形码可以可靠地满足许多多媒体安全性和数据管理应用程序的高速率存储要求。

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