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The design of the CMOS wireless bar code scanner applying optical system based on ZigBee

机译:基于ZigBee的CMOS无线条形码扫描仪的设计设计

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The traditional bar code scanner is influenced by the length of data line, but the farthest distance of the wireless bar code scanner of wireless communication is generally between 30m and 100m on the market. By rebuilding the traditional CCD optical bar code scanner, a CMOS code scanner is designed based on the ZigBee to meet the demands of market. The scan system consists of the CMOS image sensor and embedded chip S3C2401X, when the two dimensional bar code is read, the results show the inaccurate and wrong code bar, resulted from image defile、disturber、reads image condition badness、signal interference、unstable system voltage. So we put forward the method which uses the matrix evaluation and Read-Solomon arithmetic to solve them. In order to construct the whole wireless optics of bar code system and to ensure its ability of transmitting bar code image signals digitally with long distances, ZigBee is used to transmit data to the base station , and this module is designed based on image acquisition system, and at last the wireless transmitting/receiving CC2430 module circuit linking chart is established. And by transplanting the embedded RTOS system LINUX to the MCU, an applying wireless CMOS optics bar code scanner and multi-task system is constructed. Finally, performance of communication is tested by evaluation software Smart RF. In broad space, every ZIGBEE node can realize 50m transmission with high reliability. When adding more ZigBee nodes, the transmission distance can be several thousands of meters long.
机译:传统的条形码扫描仪受数据线长度的影响,但无线通信无线条码扫描仪的最远距离通常在市场上30米和100米之间。通过重建传统的CCD光学条码扫描仪,基于ZigBee设计了CMOS代码扫描仪,以满足市场需求。扫描系统由CMOS图像传感器和嵌入式芯片S3C2401X组成,当读取二维条形码时,结果显示了不准确和错误的代码栏,从图像污染,中断,读取图像条件不良,信号干扰,不稳定系统中产生了不准确和错误的码栏电压。因此,我们提出了使用矩阵评估和读取所罗门算法的方法来解决它们。为了构建条形码系统的整个无线光学器件,并确保其在数量数字地以长距离发送条形码图像信号的能力,ZigBee用于将数据传输到基站,并且该模块基于图像采集系统设计,最后,终于建立了无线发送/接收CC2430模块电路链接图。通过将嵌入式RTOS系统Linux移植到MCU,构建了一种应用无线CMOS光学条形码扫描仪和多任务系统。最后,通过评估软件智能RF测试通信的性能。在广泛的空间中,每个ZigBee节点都可以实现高可靠性50米的传输。添加更多ZigBee节点时,传输距离可以是数千米长。

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