Department of Innovation Engineering, University of Salento, Lecce, Italy.
J Med Syst. 2012 Dec;36(6):3451-62. doi: 10.1007/s10916-011-9790-2. Epub 2011 Nov 3.
Radio Frequency Identification (RFID) technology is playing a crucial role for item-level tracing systems in healthcare scenarios. The pharmaceutical supply chain is a fascinating application context, where RFID can guarantee transparency in the drug flow, supporting both suppliers and consumers against the growing counterfeiting problem. In such a context, the choice of the most adequate RFID tag, in terms of shape, frequency, size and reading range, is crucial. The potential presence of items containing materials hostile to the electromagnetic propagation exasperates the problem. In addition, the peculiarities of the different RFID-based checkpoints make even more stringent the requirements for the tag. In this work, the performance of several commercial UHF RFID tags in each step of the pharmaceutical supply chain has been evaluated, confirming the expected criticality. On such basis, a guideline for the electromagnetic design of new high-performance tags capable to overcome such criticalities has been defined. Finally, driven by such guidelines, a new enhanced tag has been designed, realized and tested. Due to patent pending issues, the antenna shape is not shown. Nevertheless, the optimal obtained results do not lose their validity. Indeed, on the one hand they demonstrate that high performance item level tracing systems can actually be implemented also in critical operating conditions. On the other hand, they encourage the tag designer to follow the identified guidelines so to realize enhanced UHF tags.
射频识别 (RFID) 技术在医疗场景中的物品级跟踪系统中发挥着关键作用。药品供应链是一个引人入胜的应用场景,RFID 可以保证药品流动的透明度,为供应商和消费者提供支持,应对日益严重的假冒问题。在这种情况下,选择最合适的 RFID 标签(形状、频率、尺寸和读取范围)至关重要。潜在存在对电磁传播有敌意的材料的物品会使问题更加恶化。此外,不同基于 RFID 的检查点的特点使得对标签的要求更加严格。在这项工作中,评估了几种商业 UHF RFID 标签在药品供应链的每个步骤中的性能,证实了预期的关键性。在此基础上,为能够克服这些关键问题的新型高性能标签的电磁设计定义了指导方针。最后,根据这些指导方针,设计、实现和测试了一种新的增强型标签。由于专利申请问题,天线形状未显示。然而,获得的最佳结果仍然有效。实际上,一方面,它们证明了高性能的物品级跟踪系统实际上也可以在关键操作条件下实现。另一方面,它们鼓励标签设计人员遵循所确定的指导方针,从而实现增强型 UHF 标签。