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Ultra Wideband Indoor Positioning Technologies: Analysis and Recent Advances

Sensors · 2016 · Vol. 16(5) · pp. 707–707
Abdulrahman AlarifiAbdulMalik S. Al‐SalmanMansour AlsalehAhmad AlnafessahSuheer Al-HadhramiMai Al-AmmarHend S. Al‐Khalifa

Abstract

In recent years, indoor positioning has emerged as a critical function in many end-user applications; including military, civilian, disaster relief and peacekeeping missions. In comparison with outdoor environments, sensing location information in indoor environments requires a higher precision and is a more challenging task in part because various objects reflect and disperse signals. Ultra WideBand (UWB) is an emerging technology in the field of indoor positioning that has shown better performance compared to others. In order to set the stage for this work, we provide a survey of the state-of-the-art technologies in indoor positioning, followed by a detailed comparative analysis of UWB positioning technologies. We also provide an analysis of strengths, weaknesses, opportunities, and threats (SWOT) to analyze the present state of UWB positioning technologies. While SWOT is not a quantitative approach, it helps in assessing the real status and in revealing the potential of UWB positioning to effectively address the indoor positioning problem. Unlike previous studies, this paper presents new taxonomies, reviews some major recent advances, and argues for further exploration by the research community of this challenging problem space.

Indoor and Outdoor Localization TechnologiesUltra-Wideband Communications TechnologyUnderwater Vehicles and Communication SystemsSWOT analysisComputer sciencePositioning technologyStrengths and weaknessesSystems engineeringUltra-widebandField (mathematics)Global Positioning SystemData scienceTelecommunications

Funding

  • King Abdulaziz City for Science and Technology
Citations
1,098
FWCI
49.03
field-weighted impact
References
120
Percentile
100%
vs. same field & year
Citations per year
Cited by
A Survey on Indoor Positioning Systems for IoT-Based Applications
IEEE Internet of Things Journal · 2022 · 467 citations
References
Hybrid TDOA/AOA mobile user location for wideband CDMA cellular systems
IEEE Transactions on Wireless Communications · 2002 · 594 citations
Ultra-wideband radio technology: Potential and challenges ahead
IEEE Communications Magazine · 2003 · 975 citations
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