基于信念函数理论的超高频RFID标签高效估计技术

IF 1.7 4区 计算机科学 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Abderrahmene Frahtia, Mustapha Benssalah, Karim Drouiche
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引用次数: 0

摘要

无线射频识别(RFID)技术通过实现自动识别和跟踪对象,使许多行业发生了革命性的变化。然而,在实际的RFID系统中,当多个标签在单个阅读器的覆盖范围内存在时,会发生碰撞,从而导致通信干扰和不准确的标签计数估计。准确估计RFID系统中标签的数量对于有效的标签识别和系统性能至关重要。本文提出了一种基于信念函数理论(也称为Dempster-Shafer理论)的超高频(UHF) RFID标签数量精确估计方法。DST为不确定性下的推理提供了一个强大的框架,并已证明其在解决复杂的信息融合挑战方面的有效性。所提出的技术在物理层操作,使用信念函数和质量分配原则来建模与标签碰撞相关的不确定性,从而实现准确的估计。通过合并来自多个来源的证据,如时间延迟和信号功率电平,该方法提高了估计过程的可靠性。仿真结果表明,该方法在估计误差和成功率方面均优于文献中报道的其他估计方法。此外,实验结果证实了仿真结果,并证明了DST在解决RFID技术中的碰撞挑战方面的能力和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

An Efficient UHF RFID Tag Estimation Technique Based on Belief Function Theory

An Efficient UHF RFID Tag Estimation Technique Based on Belief Function Theory

Radio frequency identification (RFID) technology has revolutionized various industries by enabling automatic identification and tracking of objects. However, in practical RFID systems, collisions occur when multiple tags are present within the coverage area of a single reader, resulting in communication interference and inaccurate tag count estimation. An accurate estimation of the number of tags in RFID systems is crucial for efficient tag identification and system performance. In this paper, we propose a new accurate ultrahigh frequency (UHF) RFID tag quantity estimation technique based on belief function theory, also known as Dempster–Shafer theory (DST). DST offers a robust framework for reasoning under uncertainty and has demonstrated its effectiveness in addressing intricate information–fusion challenges. The proposed technique, operating at the physical layer, uses belief functions and mass assignment principles to model the uncertainty associated with tag collisions, enabling accurate estimation. By merging evidence from multiple sources, such as time delays and signal power levels, the method improves the reliability of the estimation process. The simulation results demonstrate that the proposed technique achieves superior performance in terms of the estimation error and success rate, outperforming other estimation methods reported in the literature. Moreover, the experimental results corroborated the simulation results and demonstrated the capability and effectiveness of DST in addressing the challenges of collisions in RFID technology.

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来源期刊
CiteScore
5.90
自引率
9.50%
发文量
323
审稿时长
7.9 months
期刊介绍: The International Journal of Communication Systems provides a forum for R&D, open to researchers from all types of institutions and organisations worldwide, aimed at the increasingly important area of communication technology. The Journal''s emphasis is particularly on the issues impacting behaviour at the system, service and management levels. Published twelve times a year, it provides coverage of advances that have a significant potential to impact the immense technical and commercial opportunities in the communications sector. The International Journal of Communication Systems strives to select a balance of contributions that promotes technical innovation allied to practical relevance across the range of system types and issues. The Journal addresses both public communication systems (Telecommunication, mobile, Internet, and Cable TV) and private systems (Intranets, enterprise networks, LANs, MANs, WANs). The following key areas and issues are regularly covered: -Transmission/Switching/Distribution technologies (ATM, SDH, TCP/IP, routers, DSL, cable modems, VoD, VoIP, WDM, etc.) -System control, network/service management -Network and Internet protocols and standards -Client-server, distributed and Web-based communication systems -Broadband and multimedia systems and applications, with a focus on increased service variety and interactivity -Trials of advanced systems and services; their implementation and evaluation -Novel concepts and improvements in technique; their theoretical basis and performance analysis using measurement/testing, modelling and simulation -Performance evaluation issues and methods.
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