Type: Article
Title: Many Ways Lead to the Goal—Possibilities of Autonomous and Infrastructure-Based Indoor Positioning
Authors: Shoushtari, Hossein 
Willemsen, Thomas 
Sternberg, Harald 
Issue Date: 5-Feb-2021
Keywords: Indoor navigation; Autonomous; infrastructure; Particle filter; Pedestrian dead reckoning; fusion 5G; Inertial sensors
Abstract: 
There are many ways to navigate in Global Navigation Satellite System-(GNSS) shaded areas. Reliable indoor pedestrian navigation has been a central aim of technology researchers in recent years; however, there still exist open challenges requiring re-examination and evaluation. In this paper, a novel dataset is used to evaluate common approaches for autonomous and infrastructure-based positioning methods. The autonomous variant is the most cost-effective realization; however, realizations using the real test data demonstrate that the use of only autonomous solutions cannot always provide a robust solution. Therefore, correction through the use of infrastructure-based position estimation based on smartphone technology is discussed. This approach invokes the minimum cost when using existing infrastructure, whereby Pedestrian Dead Reckoning (PDR) forms the basis of the autonomous position estimation. Realizations with Particle Filters (PF) and a topological approach are presented and discussed. Floor plans and routing graphs are used, in this case, to support PDR positioning. The results show that the positioning model loses stability after a given period of time. Fifth Generation (5G) mobile networks can enable this feature, as well as a massive number of use-cases, which would benefit from user position data. Therefore, a fusion concept of PDR and 5G is presented, the benefit of which is demonstrated using the simulated data. Subsequently, the first implementation of PDR with 5G positioning using PF is carried out.
Subject Class (DDC): 550: Geowissenschaften
HCU-Faculty: Hydrographie und Geodäsie 
Journal or Series Name: Electronics 
Volume: 10
Issue: 4
Publisher: MDPI
ISSN: 2079-9292
Publisher DOI: 10.3390/electronics10040397
URN (Citation Link): urn:nbn:de:gbv:1373-repos-8607
Directlink: https://repos.hcu-hamburg.de/handle/hcu/663
Language: English
Creative Commons License: https://creativecommons.org/licenses/by/4.0/
Appears in CollectionPublikationen (mit Volltext)

Files in This Item:
File Description SizeFormat
electronics-10-00397-v2.pdf4.1 MBAdobe PDFView/Open
Staff view

Page view(s)

178
checked on Dec 26, 2024

Download(s)

115
checked on Dec 26, 2024

Google ScholarTM

Check

Export

This item is licensed under a Creative Commons License Creative Commons