<p>In this paper, we present the design and evaluation of a platform that can be used for timesynchronization and indoor positioning of mobile devices. The platform uses the Time-Difference-Of-Arrival (TDOA) of multiple ultrasonic chirps broadcast from a network of beacons placed throughout the environment to find an initial location as well as synchronize a receiver's clock with the infrastructure. These chirps encode identification data and ranging information that can be used to compute the receiver's location. Once the clocks have been synchronized, the system can continue performing localization directly using Time-of-Flight (TOF) ranging as opposed to TDOA. This provides similar position accuracy with fewer beacons (for tens of minute...
This paper presents a novel reference-free ultrasonic indoor location system. Unlike most previous p...
An Indoor Positioning System (IPS) is being developed at TOPIC Embed- ded Systems to track equipment...
This paper presents a novel reference-free ultrasonic indoor location system. Unlike most previous p...
Abstract-In this paper, we present the design and evaluation of a platform that can be used for time...
The growing interest for indoor position-based applications and services, as well as ubiquitous comp...
In this paper, we present an indoor ultrasonic location tracking system that can utilize off-the-she...
A time-domain (TD) and a frequency-domain (FD) method for time offset (TO) compensation between rece...
Abstract—Localization is of great importance in mobile and wireless network applications. Time Diffe...
<p>Location tracking on mobile devices like smartphones has already begun to revolutionize personal ...
Modern smartphones are a great platform for Location Based Services (LBS). While outdoor LBS for sma...
In this paper we discuss how the innate ability of mobile phone speakers to produce ultrasound can b...
All wearable centric location sensing technologies must address the issue of clock synchronisation b...
Abstract This paper investigates the precision of rapid clock synchronisation for ubiquitous sensin...
Based on the built-in sensors of a smartphone, a tightly-coupled integrated indoor positioning solut...
Location-based services have grown popular since GPS and other satellite navigation systems became a...
This paper presents a novel reference-free ultrasonic indoor location system. Unlike most previous p...
An Indoor Positioning System (IPS) is being developed at TOPIC Embed- ded Systems to track equipment...
This paper presents a novel reference-free ultrasonic indoor location system. Unlike most previous p...
Abstract-In this paper, we present the design and evaluation of a platform that can be used for time...
The growing interest for indoor position-based applications and services, as well as ubiquitous comp...
In this paper, we present an indoor ultrasonic location tracking system that can utilize off-the-she...
A time-domain (TD) and a frequency-domain (FD) method for time offset (TO) compensation between rece...
Abstract—Localization is of great importance in mobile and wireless network applications. Time Diffe...
<p>Location tracking on mobile devices like smartphones has already begun to revolutionize personal ...
Modern smartphones are a great platform for Location Based Services (LBS). While outdoor LBS for sma...
In this paper we discuss how the innate ability of mobile phone speakers to produce ultrasound can b...
All wearable centric location sensing technologies must address the issue of clock synchronisation b...
Abstract This paper investigates the precision of rapid clock synchronisation for ubiquitous sensin...
Based on the built-in sensors of a smartphone, a tightly-coupled integrated indoor positioning solut...
Location-based services have grown popular since GPS and other satellite navigation systems became a...
This paper presents a novel reference-free ultrasonic indoor location system. Unlike most previous p...
An Indoor Positioning System (IPS) is being developed at TOPIC Embed- ded Systems to track equipment...
This paper presents a novel reference-free ultrasonic indoor location system. Unlike most previous p...