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Emulation-based fault analysis on RFID tags for robustness and security evaluation

机译:对RFID标签进行基于仿真的故障分析,以实现鲁棒性和安全性评估

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摘要

This paper presents an FPGA (field-programmable gate array) based fault emulation system for analysis of fault impact on security and robustness of RFID (radio frequency identification) tags. This emulation system that deals with any RFID protocol consists of two tag-reader pairs, a fault injection module and an emulation controller all implemented in a single FPGA. The designed approach performs single event upset (SEU) and single event transient (SET) fault injection and permits with high flexibility to set communication scenarios and related parameters. Moreover, we propose a classification of produced errors to evaluate fault impacts and identify most sensitive tag flip-flops causing large number of failures and security concerns. The proposed fault injection approach provides suitable means to increase tags' security and robustness. In our experimentation campaign, an ultra-high frequency (UHF) tag architecture has been exposed to intensive SEU and SET fault injections. The duration of the campaign including results analysis is 30 min in where 6,215,316 faults are experimented. Our results have shown that the tag has tolerated 61.82% of SEUs and 67.83% of SETs. The flip-flops that constitute the tag FSM (finite state machine) have been identified as the most sensitive parts causing large number of failures. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种基于FPGA(现场可编程门阵列)的故障仿真系统,用于分析故障对RFID(射频识别)标签的安全性和鲁棒性的影响。该处理任何RFID协议的仿真系统均由两个标签读取器对,一个故障注入模块和一个仿真控制器组成,它们均在单个FPGA中实现。设计的方法执行单事件翻转(SEU)和单事件瞬态(SET)故障注入,并允许高度灵活地设置通信方案和相关参数。此外,我们建议对产生的错误进行分类,以评估故障影响并确定引起大量故障和安全问题的最敏感的标签触发器。提出的故障注入方法提供了适当的手段来提高标签的安全性和鲁棒性。在我们的实验活动中,超高频(UHF)标签架构已暴露于密集的SEU和SET故障注入中。活动的持续时间(包括结果分析)为30分钟,其中对6,215,316个故障进行了试验。我们的结果表明,该标签可耐受61.82%的SEU和67.83%的SET。构成标签FSM(有限状态机)的触发器已被确定为引起大量故障的最敏感部件。 (C)2016 Elsevier Ltd.保留所有权利。

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