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Optimization of QR code readability in movement state using response surface methodology for implementing continuous chain traceability

机译:使用响应表面方法实现连续链可追溯性的运动状态QR码可读性的优化

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摘要

Logistics and storage is the main processing for agro-food supply chain. Because of disconnection information between the two processing, it is difficult to trace continuously. An intelligent conveyer belt provides an effective method to associate storage and logistics by QR code scanning and information recording. Improving the QR code readability in movement state is the core of implementing continuous chain traceability with this belt. In this paper, a intelligent conveyer belt including automatic conveyer unit, barcode scanning unit, fault remove unit and control display unit was designed. Four factors affected QR readability were selected and the value range was confirmed, which was reading distance, code size, coded characters and belt moving speed. Based on the belt, an Central Composite Inscribed (CCI) experiment of four factors with five levels was designed using Response Surface Methodology (RSM) to obtain the optimal reading parameters. The result shows that the main factors of reading distance, belt moving speed and the interaction between reading distance and code size have the significant effect on QR code readability. Under the optimization condition of 141.45 mm reading distance, 34.58 mm code size, 100 bytes coded characters and 2.98 m/min belt moving speed, the average value of QR code readability was 95%. With the optimization parameters, the intelligent conveyer belt was used in an apple marketing enterprise. The result shows that the continuous traceability between storage and logistic can be implemented with the extended breadth, deepened depth and improved precision. (C) 2017 Elsevier B.V. All rights reserved.
机译:物流和存储是农业食品供应链的主要加工。由于两个处理之间的断开信息,难以连续追踪。智能传送带提供了一种有效的方法,可以通过QR码扫描和信息录制将存储和物流相关联。提高运动状态的QR码可读性是实现连续链可追溯性的核心。本文设计了一种包括自动输送机单元,条形码扫描单元,故障移除单元和控制显示单元的智能传送带。选择了QR可读性的四个因素,并确认了值范围,读取距离,代码大小,编码字符和带移动速度。基于皮带,使用响应表面方法(RSM)设计了四个因素的中央复合材料(CCI)实验,以获得最佳读数参数。结果表明,读取距离,带移动速度和读取距离与码大小之间的相互作用的主要因素对QR码可读性具有显着影响。在141.45毫米读取距离的优化条件下,34.58毫米代码大小,100字节编码字符和2.98米/最小带移动速度,QR码可读性的平均值为95%。通过优化参数,智能输送带用于苹果营销企业。结果表明,储存与逻辑之间的连续可追溯性可以通过延长的宽度,深度深度和改善的精度来实现。 (c)2017 Elsevier B.v.保留所有权利。

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