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基于软件定义无线电的用于ISO 29167解密的超高频射频识别原型平台。

UHF RFID Prototyping Platform for ISO 29167 Decryption Based on an SDR.

作者信息

Saxl Georg, Ferdik Manuel, Fischer Moritz, Maderboeck Martin, Ussmueller Thomas

机构信息

Microelectronics and Implantable Systems Group, Department of Mechatronics, University of Innsbruck, Innsbruck 6020, Austria.

出版信息

Sensors (Basel). 2019 May 14;19(10):2220. doi: 10.3390/s19102220.

Abstract

Ultra high frequency radio frequency identification (UHF RFID) is becoming a key technology in the Internet of Things. It allows the implementation of batteryless and wireless nodes, including sensors and actuators. Due to its possible transmission range of >10 m and potential to carry critical information, security is a highly important topic. For this reason, the International Organization for Standardization has published several crypto suites for UHF RFID within the ISO-29167 standard in 2014. Recently, research has focused on implementing those encryption features on the transponder side. However, currently no crypto enabled UHF RFID readers are available. In order to cope with the rapid development in this field, 'open' and flexible readers based on software defined radios are needed. They make it possible to quickly adapt the protocol and to test new functionalities such as encryption. This paper deals with the first implementation of the ISO 29167-19 standardized RAMON decryption on a software defined radio. The programming of this hardware is done in LabVIEW which allows for controlling the built-in transceiver modules. However, first measurements show that the decryption takes 51 s. This is because LabVIEW is not suitable for handling very large numbers like they are utilized in cryptography. Because such a long processing time is not feasible in experiments nor in a real-life scenarios, this method is not suitable for a prototyping platform. Thus, a different approach is chosen to optimize the decryption processing time. LabVIEW still provides the framework for handling the protocol and controlling the transceivers, but the decryption is performed in a Java application. In that way, the entire decryption process takes only about 2.2 ms, which is 23,318 times faster than the implementation in LabVIEW. Thus, this new approach meets the necessary timing requirements and is suitable for realistic application scenarios. The shown method allows development and testing of new functionalities in UHF RFID systems but may also be employed in any application that require long processing times in LabVIEW. Furthermore, the implementation of decryption features is the first necessary step towards a fully compliant, crypto enabled interrogator for UHF RFID, featuring a high adaptability.

摘要

超高频射频识别(UHF RFID)正成为物联网中的一项关键技术。它使得无源和无线节点(包括传感器和执行器)的实现成为可能。由于其可能超过10米的传输范围以及携带关键信息的潜力,安全性是一个极其重要的话题。因此,国际标准化组织于2014年在ISO - 29167标准内发布了几套用于UHF RFID的加密套件。最近,研究集中在应答器端实现这些加密功能。然而,目前尚无支持加密的UHF RFID阅读器。为了应对该领域的快速发展,需要基于软件定义无线电的“开放式”灵活阅读器。它们使得快速调整协议以及测试诸如加密等新功能成为可能。本文论述了在软件定义无线电上首次实现ISO 29167 - 19标准化的RAMON解密。该硬件的编程在LabVIEW中完成,它允许控制内置的收发器模块。然而,首次测量表明解密耗时51秒。这是因为LabVIEW不适合处理像在密码学中所使用的非常大的数字。由于如此长的处理时间在实验和现实场景中都不可行,这种方法不适合作为原型平台。因此,选择了一种不同的方法来优化解密处理时间。LabVIEW仍然提供处理协议和控制收发器的框架,但解密在Java应用程序中执行。通过这种方式,整个解密过程仅需约2.2毫秒,比在LabVIEW中的实现快23318倍。因此,这种新方法满足了必要的定时要求,适用于实际应用场景。所展示的方法允许在UHF RFID系统中开发和测试新功能,但也可用于任何在LabVIEW中需要长时间处理的应用。此外,解密功能的实现是迈向完全符合标准、支持加密的UHF RFID询问器的第一个必要步骤,该询问器具有高度的适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fba/6567365/ee7d30e997e6/sensors-19-02220-g001.jpg

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