General-purpose deep tracking platform across protocols for the internet of things

Zhenlin An, Qiongzheng Lin, Ping Li, Lei Yang
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引用次数: 12

Abstract

In recent years, considerable effort has been recently exerted to explore the high-precision RF-tracking systems indoors to satisfy various real-world demands. However, such systems are tailored for a particular type of device (e.g., RFID, WSN or Wi-Fi). With the rapid development of the Internet of Things (IoT), various new wireless protocols (e.g., LoRa, Sigfox, and NB-IoT) have been proposed to accommodate different demands. The coexistence of multiple types of IoT devices forces users to deploy multiple tracking systems in a warehouse or a smart home where various IoT devices are running, which causes huge additional costs in installation and maintenance. To address this issue, this work presents iArk, which is a general-purpose tracking platform for all types of IoT devices working at the ultra high frequency band. Our innovation lies in the design of the "K+1"-model hardware, the protocol free middleware, and the multipath resistant learnware. By the virtue of decoupling from wireless protocols, iArk also allows researchers to concentrate on developing a new tracking algorithm without considering the protocol diversity. To date, the platform can support five mainstream types of IoT devices (i.e., NB-IoT, LoRa, RFID, Sigfox and Zigbee) and is scalable to other types with minimal effort.
面向物联网的通用深度跟踪平台
近年来,人们一直在努力探索室内高精度射频跟踪系统,以满足各种现实需求。然而,这样的系统是为特定类型的设备(例如,RFID, WSN或Wi-Fi)量身定制的。随着物联网的快速发展,各种新的无线协议(如LoRa、Sigfox、NB-IoT)被提出以适应不同的需求。多种类型物联网设备的共存迫使用户在仓库或智能家居中部署多个跟踪系统,其中运行各种物联网设备,这导致安装和维护方面的巨大额外成本。为了解决这个问题,本工作提出了iArk,这是一个通用的跟踪平台,适用于在超高频波段工作的所有类型的物联网设备。我们的创新在于设计了“K+1”模型硬件、无协议中间件和抗多路径学习器。通过与无线协议的解耦,iArk还允许研究人员专注于开发新的跟踪算法,而不考虑协议的多样性。迄今为止,该平台可以支持五种主流类型的物联网设备(即NB-IoT, LoRa, RFID, Sigfox和Zigbee),并且可以轻松扩展到其他类型。
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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