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首页> 外文期刊>Image Processing, IEEE Transactions on >High Capacity Color Barcodes: Per Channel Data Encoding via Orientation Modulation in Elliptical Dot Arrays
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High Capacity Color Barcodes: Per Channel Data Encoding via Orientation Modulation in Elliptical Dot Arrays

机译:大容量彩色条形码:通过椭圆点阵列中的方向调制进行每通道数据编码

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We present a new high capacity color barcode. The barcode we propose uses the cyan, magenta, and yellow (C,M,Y) colorant separations available in color printers and enables high capacity by independently encoding data in each of these separations. In each colorant channel, payload data is conveyed by using a periodic array of elliptically shaped dots whose individual orientations are modulated to encode the data. The orientation based data encoding provides beneficial robustness against printer and scanner tone variations. The overall color barcode is obtained when these color separations are printed in overlay as is common in color printing. A reader recovers the barcode data from a conventional color scan of the barcode, using red, green, and blue (R,G,B) channels complementary, respectively, to the print C, M, and Y channels. For each channel, first the periodic arrangement of dots is exploited at the reader to enable synchronization by compensating for both global rotation/scaling in scanning and local distortion in printing. To overcome the color interference resulting from colorant absorptions in noncomplementary scanner channels, we propose a novel interference minimizing data encoding approach and a statistical channel model (at the reader) that captures the characteristics of the interference, enabling more accurate data recovery. We also employ an error correction methodology that effectively utilizes the channel model. The experimental results show that the proposed method works well, offering (error-free) operational rates that are comparable to or better than the highest capacity barcodes known in the literature.
机译:我们提出了一种新的大容量彩色条形码。我们建议的条形码使用彩色打印机中可用的青色,品红色和黄色(C,M,Y)着色剂分离,并通过在每个分离中独立编码数据来实现高容量。在每个着色剂通道中,有效载荷数据是通过使用椭圆形的点的周期性数组来传送的,这些点的各个方向都经过调制以对数据进行编码。基于方向的数据编码可有效抵抗打印机和扫描仪色调变化。当这些分色以彩色打印中常见的方式叠加打印时,将获得整体彩色条形码。读取器使用分别与打印C,M和Y通道互补的红色,绿色和蓝色(R,G,B)通道,从常规的条形码彩色扫描中恢复条形码数据。对于每个通道,首先在读取器上利用点的周期性排列,通过补偿扫描中的整体旋转/缩放和打印中的局部变形来实现同步。为了克服由非互补扫描仪通道中的色料吸收引起的颜色干扰,我们提出了一种新颖的将干扰最小化的数据编码方法和一种统计通道模型(在读取器处),该模型捕获了干扰的特征,从而能够更准确地恢复数据。我们还采用了有效利用信道模型的纠错方法。实验结果表明,所提出的方法行之有效,可提供(无错误的)操作速率,该速率可与文献中已知的最大容量条形码相媲美或更好。

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