低频、高频和超高频RFID网络中BFSA冲突的解决

Varun Bhogal, Z. Prodanoff, S. Ahuja, Kenneth Martin
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引用次数: 8

摘要

RFID射频识别技术在许多应用中得到了普及。硬件组件成本的降低以及国际RFID标准的广泛采用导致了这项技术的兴起。与RFID基础设施实施相关的主要因素之一是标签的成本。在低频频谱中工作的RFID标签被广泛使用,因为它们最便宜,但实现范围很小。本文分析了RFID在低频低频、高频高频和超高频超高频环境下的性能。作者的评估是理论上的,使用基于被动标签BFSA的模拟模型,假设每个阅读器有10到1500个标签,并使用OPNET Modeler 17创建。在其他条件相同的情况下,作者的结果表明,UHF标签的总普查延迟最低,而LF标签的网络吞吐量性能在阅读器范围内大规模实现数百个标签时最高。对三组不同的调查结果进行了统计分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On BFSA Collision Resolution in LF, HF, and UHF RFID Networks
RFID radio frequency identification technology has gained popularity in a number of applications. Decreased cost of hardware components along with wide adoption of international RFID standards have led to the rise of this technology. One of the major factors associated with the implementation of RFID infrastructure is the cost of tags. RFID tags operating in the low frequency spectrum are widely used because they are the least expensive, but have a small implementation range. This paper presents an analysis of RFID performance across low frequency LF, high frequency HF, and ultra-high frequency UHF environments. The authors' evaluation is theoretical, using a passive-tag BFSA based simulation model that assumes 10 to 1,500 tags per reader and is created with OPNET Modeler 17. Ceteris paribus, the authors' results indicate that total census delay is lowest for UHF tags, while network throughput performance of LF tags is highest for large scale implementations of hundreds of tags in reader's range. A statistical analysis has been conducted on the findings for the three different sets.
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