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Hardware based analysis of RFID anti-collision protocols based on the standard EPCglobal Class-1 Generation-2

机译:基于标准EPCGLOBAL Class-1生成-2的RFID防碰撞协议基于硬件的分析

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Radio Frequency Identification (RFID) technology is undergoing a remarkable development in the last few years. In this technology, identification information is exchanged between two devices: readers and tags. If two tags attempt to transmit simultaneously, a collision is produced. This phenomena, known as the tag collision problem, is becoming increasingly important, since it leads to an increase in the number of reader transmitted bits and identification delay, in addition to a wastage of energy and bandwidth. In this context, protocols based on the EPCglobal Class-1 Generation-2 (EPC C1G2) standard arbitrate collisions by adjusting the transmission frame size. The standard presents an uncertainty in the selection of the frame size, since it does not specify the exact value. This has led to many different alternatives. This paper presents a hardware analysis of the most relevant anti-collision protocols which deal with this uncertainty. The focus of this analysis is to design and evaluate with VHDL the tag's chip design in order to extract the number clock cycles a tag employs to be identified.
机译:射频识别(RFID)技术在过去几年中正在进行显着的发展。在该技术中,在两个设备之间交换识别信息:读者和标签。如果两个标签尝试同时传输,则产生碰撞。这种现象称为标签碰撞问题,变得越来越重要,因为它除了能量和带宽的浪费之外,还导致读取器传输位数和识别延迟的增加。在本文中,通过调整传输帧大小,基于EPCGlobal类-1生成-2(EPC C1G2)标准的协议。标准在选择帧大小时呈现不确定性,因为它没有指定精确值。这导致了许多不同的替代方案。本文介绍了对处理这种不确定性的最相关的防碰撞协议的硬件分析。该分析的重点是使用VHDL的芯片设计进行设计和评估,以便提取数字时钟周期才能识别标签。

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