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一种作为道路运输定位服务的模块化定位系统。

A modular localization system as a positioning service for road transport.

作者信息

Brida Peter, Machaj Juraj, Benikovsky Jozef

机构信息

Department of Telecommunications and Multimedia, Faculty of Electrical Engineering, University of Zilina, Univerzitna 1, Zilina 010 26, Slovakia.

出版信息

Sensors (Basel). 2014 Oct 28;14(11):20274-96. doi: 10.3390/s141120274.

Abstract

In recent times smart devices have attracted a large number of users. Since many of these devices allow position estimation using Global Navigation Satellite Systems (GNSS) signals, a large number of location-based applications and services have emerged, especially in transport systems. However GNSS signals are affected by the environment and are not always present, especially in dense urban environment or indoors. In this work firstly a Modular Localization Algorithm is proposed to allow seamless switching between different positioning modules. This helps us develop a positioning system that is able to provide position estimates in both indoor and outdoor environments without any user interaction. Since the proposed system can run as a service on any smart device, it could allow users to navigate not only in outdoor environments, but also indoors, e.g., underground garages, tunnels etc. Secondly we present the proposal of a 2-phase map reduction algorithm which allows one to significantly reduce the complexity of position estimation processes in case that positioning is performed using a fingerprinting framework. The proposed 2-phase map reduction algorithm can also improve the accuracy of the position estimates by filtering out reference points that are far from the mobile device. Both algorithms were implemented into a positioning system and tested in real world conditions in both indoor and outdoor environments.

摘要

近年来,智能设备吸引了大量用户。由于其中许多设备允许使用全球导航卫星系统(GNSS)信号进行位置估计,大量基于位置的应用和服务应运而生,尤其是在交通系统中。然而,GNSS信号会受到环境影响,并且并非总是存在,特别是在密集的城市环境或室内环境中。在这项工作中,首先提出了一种模块化定位算法,以允许在不同定位模块之间进行无缝切换。这有助于我们开发一种定位系统,该系统能够在室内和室外环境中提供位置估计,而无需任何用户交互。由于所提出的系统可以作为一种服务在任何智能设备上运行,它可以让用户不仅在室外环境中导航,还能在室内导航,例如地下车库、隧道等。其次,我们提出了一种两阶段地图简化算法,该算法能够在使用指纹框架进行定位的情况下,显著降低位置估计过程的复杂度。所提出的两阶段地图简化算法还可以通过滤除远离移动设备的参考点来提高位置估计的准确性。这两种算法都被集成到一个定位系统中,并在室内和室外环境的实际条件下进行了测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7544/4279482/a9c5156b3b52/sensors-14-20274f1.jpg

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