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Auditing of Ultra Dense RFID Straws in Cryogenic Container at -196°C

机译:在-196°C的低温容器中审计超致密RFID吸管

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摘要

This paper presents a new auditing system scheme based on radio frequency identification technologies for cryopreservation applications using liquid nitrogen at temperature of -196°C. Conventional approaches such as hand written labels or printed barcodes suffer from the significant manual labor work and freeze-thaw-damaging risk of the sample. The proposed scheme integrates miniaturized RFID electronic devices and antennas in the thin cryogenic straws without significantly changing their dimensions. In addition, 900 MHz frequency band is chosen for long reading range, which eliminates the need to take the preserved biological samples out of liquid nitrogen and minimizes the damaging risk. Four most important technical aspects for the system have been identified and investigated: 1. The link budget is evaluated by FDTD numerical simulations to make sure the RF signal strength meets the requirement for the reading range. 2. The total efficiency of small and tightly coupled RFID dipole antennas is studied and obtained by simulations. 3. The current-voltage behaviors of two types of transistors in typical RFID electronics have been characterized by measurements to identify the suitable transistor type for reliable circuit designs at -196°C. 4. The easy-to-access and anti-collision reading system for fast data collection is analyzed. The obtained results indicate that the proposed scheme is feasible, which can be beneficial for the relevant scientific fields.
机译:本文介绍了一种新的审计系统方案,基于在-196℃的温度下使用液氮的冷冻保存应用的射频识别技术。诸如手写标签或印刷条形码的常规方法遭受显着的体力劳动工作和样品的冻融风险。该方案将小型化的RFID电子设备和天线集成在薄的低温秸秆中,而不会显着改变它们的尺寸。此外,选择900MHz频带,用于长读取范围,消除了需要将保存的生物样品从液氮中取出并最大限度地减少破坏性风险。系统的四个最重要的技术方面已被识别和调查:1。通过FDTD数值模拟评估链路预算,以确保RF信号强度满足读取范围的要求。 2.通过模拟研究和获得小型和紧密耦合的RFID偶极天线的总效率。 3.通过测量,典型RFID电子器件中两种类型的晶体管的电流 - 电压行为已经进行了测量,以识别适用于-196°C的可靠电路设计的合适晶体管型。 4.分析了快速数据收集的易于访问和防碰撞读取系统。所获得的结果表明,拟议的计划是可行的,这可能对相关的科学领域有益。

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