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ZigBee network positioning with support of Real-Time Kinematic GPS and terrestrial measurements

机译:ZigBee网络定位,支持实时运动GPS和地面测量

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摘要

Ad hoc network based positioning is particularly useful when fixed positioning infrastructures are unavailable, or were destroyed in a disaster. It can also be used as an augmented system to continuously provide spatial information when satellite positioning systems fail. ZigBee is an emerging wireless technology based on the IEEE 802-15-4 standard. Its advantages include low cost, low power consumption and license free operating frequencies. In addition to applications for low volume data transmissions, some ZigBee modules such as the TI/Chipcon CC2431 already have a built-in location engine for positioning applications. One of the main challenges in ZigBee positioning is to obtain the coordinates of the ZigBee reference nodes that form a network of control points for position fixing. This is particularly challenging when the network is continuously expanding and covers areas with various obstructions, and when the control point coordinates of newly covered areas need to be defined in the ZigBee system. In this paper, the ZigBee wireless technology and its positioning concept is introduced, followed by an accuracy test along a long and narrow corridor and of a proposal of an algorithm for a quick establishment of a ZigBee network. Our indoor investigations show that the ZigBee positioning can generally achieve a better than 5 m accuracy, that a ZigBee network can be efficiently and effectively established with the support of Networked Transport of RTCM via Internet Protocol based Real-Time Kinematic GPS (NTRIP RTK GPS) and conventional measurements and that the network node connectivity status can be monitored by a modelling algorithm of the node connectivity matrix.
机译:当固定定位基础结构不可用或在灾难中被破坏时,基于Ad hoc网络的定位特别有用。它也可以用作增强系统,以在卫星定位系统出现故障时连续提供空间信息。 ZigBee是一种基于IEEE 802-15-4标准的新兴无线技术。它的优势包括低成本,低功耗和免许可的工作频率。除了用于少量数据传输的应用程序外,某些ZigBee模块(例如TI / Chipcon CC2431)已经具有用于定位应用程序的内置定位引擎。 ZigBee定位的主要挑战之一是获取ZigBee参考节点的坐标,这些坐标形成用于定位的控制点网络。当网络不断扩展并覆盖具有各种障碍的区域时,以及在ZigBee系统中需要定义新覆盖区域的控制点坐标时,这尤其具有挑战性。本文介绍了ZigBee无线技术及其定位概念,然后沿着长而窄的走廊进行了精度测试,并提出了一种用于快速建立ZigBee网络的算法的建议。我们的室内调查表明,ZigBee定位通常可以达到5 m以上的精度,并且通过基于Internet协议的实时运动GPS(NTRIP RTK GPS)支持RTCM的网络传输,可以有效地建立ZigBee网络常规测量,并且可以通过节点连接矩阵的建模算法监视网络节点连接状态。

著录项

  • 来源
    《Survey Review》 |2013年第329期|81-87|共7页
  • 作者

    E. Mok; Y. K. Yeung;

  • 作者单位

    Department of Land Surveying and Geo-informatics, The Hong Kong Polytechnic University, Hung Horn, Kowloon, Hong Kong, China;

    Department of Land Surveying and Geo-informatics, The Hong Kong Polytechnic University, Hung Horn, Kowloon, Hong Kong, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ZigBee positioning; NTRIP; RTK GPS; terrestrial measurements;

    机译:ZigBee定位;NTRIP;RTK GPS;地面测量;

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