This paper shows that the accuracy of azimuth angle measurement for an interferometric localization system used to locate tags in its Line-of-Sight (LoS) can be improved by exploiting Impulse Radio-Ultra WideBand (IR-UWB) signals and without increasing the frequency bandwidth. This solution uses a Phase Correlation (PC) method, initially applied for Continuous Wave (CW) signals, adapted for Ultra WideBand (UWB) pulse signals. The obtained results are compared to those computed by a classical Energy Detection (ED) method where it becomes impossible to estimate azimuth angles for tag positions close to the orthogonal centered axis of the localization system baseline
Localization has been evolving rapidly over the last 20 years, especially in the wireless world. Fro...
Ultra wideband (UWB) signaling and its usability in positioning schemes has been discussed in this r...
Indoor localization System or Indoor Positioning System (IPS) is a promising system where it can eff...
This article discusses the ability to improve the resolution of range and azimuth angle measurements...
The thesis describes UWB technology, compares available hardware platforms and describes UWB localiz...
The localization of wireless devices in indoor scenarios presents a major challenge because of multi...
Location-awareness has been drawing significant attention in recent years. In particular, the emergi...
Abstract—In this paper, a low cost UWB-based position local-ization experiment system is designed an...
Location-awareness has been drawing significant attention in recent years. In particular, the emergi...
The objectives of this project are to develop and analyze an ultra-wideband wireless localization tr...
The existing positioning methods that use received signal strength indication (RSSI) and channel sta...
In the age of rapid developments of data and multimedia technology, people also show higher demand o...
Many internet of things (IoT) applications nowadays rely on positioning systems to optimize their de...
Localization has been evolving rapidly over the last 20 years, especially in the wireless world. Fro...
International audienceThe increasingly widespread use of sensor and actuator networks and in general...
Localization has been evolving rapidly over the last 20 years, especially in the wireless world. Fro...
Ultra wideband (UWB) signaling and its usability in positioning schemes has been discussed in this r...
Indoor localization System or Indoor Positioning System (IPS) is a promising system where it can eff...
This article discusses the ability to improve the resolution of range and azimuth angle measurements...
The thesis describes UWB technology, compares available hardware platforms and describes UWB localiz...
The localization of wireless devices in indoor scenarios presents a major challenge because of multi...
Location-awareness has been drawing significant attention in recent years. In particular, the emergi...
Abstract—In this paper, a low cost UWB-based position local-ization experiment system is designed an...
Location-awareness has been drawing significant attention in recent years. In particular, the emergi...
The objectives of this project are to develop and analyze an ultra-wideband wireless localization tr...
The existing positioning methods that use received signal strength indication (RSSI) and channel sta...
In the age of rapid developments of data and multimedia technology, people also show higher demand o...
Many internet of things (IoT) applications nowadays rely on positioning systems to optimize their de...
Localization has been evolving rapidly over the last 20 years, especially in the wireless world. Fro...
International audienceThe increasingly widespread use of sensor and actuator networks and in general...
Localization has been evolving rapidly over the last 20 years, especially in the wireless world. Fro...
Ultra wideband (UWB) signaling and its usability in positioning schemes has been discussed in this r...
Indoor localization System or Indoor Positioning System (IPS) is a promising system where it can eff...