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Tash: Toward Selective Reading as Hash Primitives for Gen2 RFIDs

机译:Tash:选择性阅读作为Gen2 RFID的哈希原语

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Deployment of billions of commercial off-the-shelf (COTS) radio frequency identification (RFID) tags has drawn much of the attention of the research community because of the performance gaps of current systems. In particular, hash-enabled protocol (HEP) is one of the most thoroughly studied topics in the past decade. HEPs are designed for a wide spectrum of notable applications (e.g., missing detection) without need to collect all tags. HEPs assume that each tag contains a hash function, such that a tag can select a random but predictable time slot to reply with a one-bit presence signal that shows its existence. However, the hash function has never been implemented in COTS tags in reality, which makes HEPs a ten-year untouchable mirage. This paper designs and implements a group of analog on-tag hash primitives (called Tash) for COTS Gen2-compatible RFID systems, which moves prior HEPs forward from theory to practice. In particular, we design three types of hash primitives, namely, tash function, tash table function, and tash operator. All of these hash primitives are implemented through the selective reading, which is a fundamental and mandatory functionality specified in Gen2 protocol, without any hardware modification and fabrication-a feature allowing zero-cost fast deployment on billions of Gen2 tags. We further apply our hash primitives in one typical HEP application (i.e., missing detection) to show the feasibility and effectiveness of Tash. Results from our prototype, which is composed of one ImpinJ reader and 3000 Alien tags, demonstrate that the new design lowers 70% of the communication overhead in the air. The tash operator can additionally introduce an overhead drop of 29.7%.
机译:由于当前系统的性能差距,数十亿商业现成(COTS)射频识别(RFID)标签的部署已经引起了研究界的大部分注意。特别是,支持哈希的协议(HEP)是过去十年中最彻底的学习主题之一。 HEPS专为广谱的广谱值而设计(例如,缺失检测),无需收集所有标签。 HEPS假设每个标签包含哈希函数,使得标签可以选择随机但可预测的时隙以回复显示其存在的一位存在信号。然而,哈希函数从未在现实中的COT标签中实施,这使HEP是一个十年的不可触及的幻影。本文设计并实现了一组模拟上标签散列基元(称为TASH),用于COTE Gen2兼容RFID系统,其先前从理论前进到实践。特别是,我们设计了三种类型的哈希基元,即Tash函数,Tash表函数和短脚算子。所有这些哈希基元通过选择性读数来实现,这是Gen2协议中规定的基本和强制性功能,而无需任何硬件修改和制造 - 一个特征,允许在数十亿的Gen2标签上进行零成本快速部署。我们进一步在一个典型的HEP应用程序(即,缺失检测)中应用我们的哈希原语,以显示TASH的可行性和有效性。我们的原型由一个Impinj Reader和3000个外星标签组成的原型,证明了新的设计降低了空气中的通信开销的70%。 Tash运营商可以另外引入29.7%的开销下降。

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