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Mapping of RFID tag readability in relation to the food content in a refrigerated sea container at 915 MHz.

机译:RFID标签可读性与915 MHz冷藏海运集装箱中食品含量的关系图。

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摘要

Perishable foods are extremely sensitive to temperature abuse often observed during sea transportation, which regularly involves long transit times. The goal of this study was to compare the effects of the cargo on RFID (radio frequency identification) tag readability to achieve real-time temperature monitoring. A 12 m long refrigerated sea container (68 m3) and a 915MHz RFID system were used. The container was loaded three times with different food products: canned vegetables, fresh meat and frozen bread. Each load was instrumented with 42 RFID tags evenly distributed throughout the volume. Results showed that canned vegetables provide the best readings (97.6% of tags read), followed by fresh meat (61.9%) and frozen bread (57.1%) respectively. These results validated that radio waves at 915 MHz are absorbed by high water as well as ice contents. However, spacing between metal surfaces and tags can allow excellent RFID readability even if RF reflects on metallic surfaces. Industrial relevance: The food industry is facing great challenges when it comes to food transportation and distribution. Marine transportation is a slow operation that can expose shipments to a significant range of non-ideal temperatures. Refrigeration units may experience failure during shipment, which inevitably causes losses in quality. The implementation of a real-time temperature monitoring system within a container can provide a good tool to address this issue. Radio frequency technology definitely offers additional benefits such as real-time monitoring as well as tracking and tracing.
机译:易腐食品对海上运输中经常观察到的温度滥用极为敏感,这经常涉及较长的运输时间。这项研究的目的是比较货物对RFID(射频识别)标签可读性的影响,以实现实时温度监控。使用了一个12 m长的冷藏海运集装箱(68 m 3 )和一个915MHz RFID系统。容器中装有三种不同的食品:蔬菜罐头,新鲜的肉和冷冻面包。每个负载都装有42个RFID标签,均匀分布在整个体积中。结果显示,蔬菜罐头的读取最好(占标签读取的97.6%),其次是新鲜肉类(61.9%)和冷冻面包(57.1%)。这些结果证实了915 MHz的无线电波被高水和冰含量吸收。但是,即使RF反射在金属表面上,金属表面和标签之间的间距也可以实现出色的RFID可读性。行业相关性:食品行业在食品运输和分配方面面临巨大挑战。海上运输是一种缓慢的操作,可能会使货物暴露在很大范围的非理想温度下。制冷单元在运输过程中可能会发生故障,这不可避免地会导致质量损失。在容器内实施实时温度监控系统可以提供解决此问题的良好工具。射频技术无疑会带来其他好处,例如实时监控以及跟踪和追踪。

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