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Range validation of UWB and Wi-Fi for integrated indoor positioning

Guenther Retscher, Vassilis Gikas, Hannes Hofer, Harris Perakis, Allison Kealy

Year
2019
Citations
27
Access
Open access

Abstract

In this paper, we address the challenge of robust indoor positioning using integrated UWB and Wi-Fi measurements. A key limitation of any fusion algorithm is whether the distribution that describes the random errors in the measurements has been correctly specified. Here, we describe the details of a set of practical experiments conducted on a purpose built calibration range, to evaluate the performance of commercial UWB sensors with Wi-Fi measurements as captured by an in-house smartphone application. In this paper, we present comparisons of ranges from the UWB sensors and the Wi-Fi built into the smartphone to true ranges obtained from a robotic total station. This approach is validated in both static and kinematic tests. The calibration range has been established as one component of an indoor laboratory to undertake a more diverse research agenda into robust indoor positioning systems. The experiments presented here have been conducted collaboratively under the joint FIG (WG5.5) and IAG (SC4.2) working groups on multi-sensor systems.

Keywords

Computer scienceCalibrationRange (aeronautics)Real-time computingKey (lock)Set (abstract data type)KinematicsSimulationEngineeringAerospace engineering

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