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Extending Birthday Paradox Theory to Estimate the Number of Tags in RFID Systems

机译:扩展生日悖论理论以估计RFID系统中标签的数量

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摘要

The main objective of Radio Frequency Identification systems is to provide fast identification for tagged objects. However, there is always a chance of collision, when tags transmit their data to the reader simultaneously. Collision is a time-consuming event that reduces the performance of RFID systems. Consequently, several anti-collision algorithms have been proposed in the literature. Dynamic Framed Slotted ALOHA (DFSA) is one of the most popular of these algorithms. DFSA dynamically modifies the frame size based on the number of tags. Since the real number of tags is unknown, it needs to be estimated. Therefore, an accurate tag estimation method has an important role in increasing the efficiency and overall performance of the tag identification process. In this paper, we propose a novel estimation technique for DFSA anti-collision algorithms that applies birthday paradox theory to estimate the number of tags accurately. The analytical discussion and simulation results prove that the proposed method increases the accuracy of tag estimation and, consequently, outperforms previous schemes.
机译:射频识别系统的主要目的是为带标签的物体提供快速识别。但是,当标签同时将其数据传输到读取器时,总是有可能发生冲突。碰撞是一项耗时的事件,会降低RFID系统的性能。因此,文献中提出了几种防碰撞算法。动态成帧时隙ALOHA(DFSA)是这些算法中最受欢迎的算法之一。 DFSA根据标签数量动态修改帧大小。由于标签的实际数量是未知的,因此需要对其进行估计。因此,准确的标签估计方法在提高标签识别过程的效率和整体性能方面具有重要作用。在本文中,我们提出了一种新的针对DFSA抗冲突算法的估计技术,该技术应用了生日悖论理论来准确估计标签的数量。分析讨论和仿真结果证明,该方法提高了标签估计的准确性,因此,其性能优于先前的方案。

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