Design & development of location identification using RFID with WiFi positioning systems

K. Deepika, J. Usha
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引用次数: 8

Abstract

Localization of an article in a bounded area can be attained by WiFi Positioning System (WPS). WPS is used to identify entities inside the human habitation area using radio waves collected by smart devices. The proposed system focuses to track an individual in a bounded environment. The recognition of the entity can be achieved by Radio Frequency Identification (RFID) transponders. The RFID trackers accomplish fingerprinting with the Unique Device Identification (UDI). The procedure is deployed using an RFID sensor based application which pinpoints the location of the personnel inside architectural frameworks. The position co-ordinates in the indoor area can be using the WiFi technology. The mechanism is split into two sections — Data Collection and Position Identification. The data collection combines the location information acquired from the sensor technologies. The identification of an individual with RFID transponders which results in the tracking of the entity. The location information obtained from the sensors are without time constraints and is updated in the RFID readers and databases including the last time zone. Design and development of the application from connecting to the sensor devices, distance estimation between the sensor devices and the entities, retrieval of the exact position information are deliberated. The pseudo code to connect to the nearest sensor device and obtain the location information is stated. The mechanism of the position estimation algorithm is executed using LabVIEW system design and development software.
无线射频识别与WiFi定位系统的设计与开发
WiFi定位系统(WiFi Positioning System, WPS)可以对限定区域内的物品进行定位。WPS使用智能设备收集的无线电波来识别人类居住区域内的实体。该系统专注于在有限环境中跟踪个体。实体的识别可以通过射频识别(RFID)转发器来实现。RFID跟踪器使用唯一设备标识(UDI)完成指纹识别。该过程使用基于RFID传感器的应用程序进行部署,该应用程序可以在架构框架内精确定位人员的位置。室内区域的位置坐标可以使用WiFi技术。该机制分为两个部分-数据收集和位置识别。数据收集结合了从传感器技术获取的位置信息。用射频识别应答器识别个人,从而跟踪实体。从传感器获得的位置信息不受时间限制,并在RFID读取器和数据库中更新,包括最后一个时区。从传感器设备的连接、传感器设备与实体之间的距离估计、精确位置信息的检索等方面对应用程序的设计和开发进行了详细的讨论。伪代码连接到最近的传感器设备,并获得位置信息。利用LabVIEW系统设计开发软件实现了位置估计算法的实现机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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