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Effects of antenna position on readability of RFID tags in a refrigerated sea container of frozen bread at 433 and 915 MHz

机译:天线位置对冷藏冷冻集装箱在433和915 MHz频率下RFID标签可读性的影响

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摘要

Perishable foods are frequently exposed to temperature abuse during transportation and distribution. The use of traditional data loggers do not permit the instantaneous data transmission that radio frequency technology offers. Temperature has a major impact on food quality and safety, particularly when long transit times are imposed. Consequently, using radio frequency identification (RFID) to track and monitor temperature in perishable shipments will bring significant benefits to the cold chain. The goal of this study was to determine the optimal RF antenna placement to achieve full RFID tag readability inside a sea container. Testing was made at two different frequencies (915 and 433 MHz) while the refrigeration unit was running at -25 °C and the container was fully loaded with frozen bread. The sea container was instrumented with eight RFID antennas, three of which were tuned for 433 MHz and five for 915 MHz. All antenna wires exited the container via the forward drain holes. The RFID readers were outside the container and connected to their respective antennas, one at a time. Thirty eight RFID tags were evenly distributed onto the pallets of frozen bread. All RFID tags were active tags capable of reading and recording temperature. Results at 915 MHz showed readability levels between 47% and 79%, with an average of 68.4%, whereas 433 MHz demonstrated 100% readability at all antenna positions. In conclusion, the 433 MHz RFID system appears suitable for real time temperature monitoring of frozen bread inside a sea container. This technology could be applied to other food items similar to frozen bread.
机译:易腐食品在运输和分配过程中经常遭受温度滥用。传统数据记录器的使用不允许射频技术提供的瞬时数据传输。温度对食品质量和安全有重大影响,特别是在运输时间长的情况下。因此,使用射频识别(RFID)跟踪和监控易腐货物中的温度将为冷链带来巨大的好处。这项研究的目的是确定最佳RF天线位置,以实现集装箱内RFID标签的完整可读性。在制冷设备在-25°C下运行并且容器完全装有冷冻面包的同时,在两个不同的频率(915和433 MHz)下进行了测试。该海运集装箱装有八个RFID天线,其中三个调谐为433 MHz,五个调谐为915 MHz。所有天线导线均通过前排水孔流出容器。 RFID读取器位于容器外部,并一次连接至其各自的天线。 38个RFID标签均匀地分布在冷冻面包的托盘上。所有RFID标签都是能够读取和记录温度的有源标签。 915 MHz的结果显示可读性水平介于47%和79%之间,平均为68​​.4%,而433 MHz的结果表明在所有天线位置的可读性均为100%。总之,433 MHz RFID系统似乎适合实时监控海运集装箱内的冷冻面包。该技术可以应用于类似于冷冻面包的其他食品。

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