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Evaluation of sensor readability and thermal relevance for RFID temperature tracking.

机译:评估用于RFID温度跟踪的传感器可读性和热相关性。

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Radio frequency identification (RFID) offers a way to satisfy the current needs of the produce industry for product identification and cool chain preservation. The main challenges for RFID temperature tracking in produce cool chain monitoring are the produce's high-water content and the cost. Water absorbs radio frequency energy decreasing read range and limiting sensor placement. Whereas cost limits the number of sensors that may be used in a viable system. Therefore, the minimal number of sensor placements that maximize the representation of the temperatures of the product in pallets of high-water content produce must be determined. The objectives of the research presented in this paper were: to identify a location able to represent 85% of the temperatures present in a pallet of bottled water mimicking produce when subjected to heating and cooling conditions similar to the loading-unloading process. And second, to assess the readability and read range of a commercially available RFID battery assisted passive tag in this thermally relevant position so as to determine whether it would be read at the required distance for the supply chain. A single location representing 85% of the temperatures in the pallet was not found; consequently, it was suggested using a location with a temperature that would be the middle point of an interval that gathers the temperature readings of approximately 85% of the measured locations. In addition, results indicate that tag readability and read range in this position vary depending on the configuration of the side of the pallet facing the antennas and the amount of air in the surroundings of the RFID tag. All rights reserved, Elsevier.
机译:射频识别(RFID)提供了一种方法来满足农产品行业当前对产品识别和冷链保存的需求。在产品冷链监控中,RFID温度跟踪的主要挑战是产品的高水含量和成本。水会吸收射频能量,从而减小读取范围并限制传感器的放置。成本限制了可行系统中可以使用的传感器数量。因此,必须确定使高水含量农产品托盘中产品温度表示最大化的最小传感器放置数量。本文提出的研究目标是:确定一个位置,该位置在与装卸过程相似的加热和冷却条件下,能够代表瓶装水托盘中模拟产品的温度的85%。其次,评估在该热相关位置的市售RFID电池辅助无源标签的可读性和读取范围,以确定是否可以在供应链所需的距离处读取它。找不到代表托盘温度85%的单一位置;因此,建议使用温度为某个间隔中间点的位置,该间隔收集大约85%的测量位置的温度读数。另外,结果表明,在该位置中的标签可读性和读取范围根据面向天线的托盘侧面的结构以及RFID标签周围的空气量而变化。保留所有权利,Elsevier。

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