快速标签新型射频识别C1G2协议的实现

A. Parvathy, N. Hemavathi, R. Sriranjani
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引用次数: 0

摘要

随着物联网的蓬勃发展,射频识别标签技术正在受到影响。车辆数字资产与云托管应用程序挂钩,并得到了极大的阐述。因此,有必要通过Mifare标签身份验证的过程。射频识别数据的收集、清理和处理,提取可操作的情报,是射频通信和人工智能算法的本质要求,广泛应用于云平台。有网关、集线器、总线和代理等形式的中间件解决方案,用于向云数据库提供地面射频识别数据。在本研究中,利用射频识别系统的不同类型的认证框架,利用工作在不同频率的无源标签,利用单因素、双因素和多因素属性。已提出并实施。根据不同的标准计算各种参数,得出与收费站低频射频识别无源标签相比,具有双因素认证的高频读写器具有最大的距离覆盖范围,最小的功耗和最高的带宽覆盖范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of Novel Radio Frequency Identification C1G2 protocol for Fast Tags
With the flourishment of Internet of Things, Radio Frequency Identification tag technology is being influenced. The vehicle digital assets are hooked to cloud-hosted applications and greatly expounded. Hence, there is a need to go through the process of Mifare tag authentication. It is an essential requirement of Radio Frequency communication and Artificial intelligence algorithms and extensively used in cloud platforms in order to collect, cleanse, and crunch radio frequency identification data to extricate actionable intelligence. There are middleware solutions in the form of gateways, hubs, buses, and brokers for enabling ground-level radio frequency identification data to cloud databases. In this research, different types authentication framework using radio frequency identification system, make use of One Factor, Two Factor and Multi-factor attributes utilizing the passive tags operating at different frequency. has been proposed and implemented. Various parameters are calculated under different criteria and comprehend that High-frequency reader with two factor Authentication provides maximum distance coverage, minimum power consumption, and highest bandwidth coverage as compared to low-frequency radio frequency identification passive tags on toll booth.
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