This paper presents a novel formulation for the estimation of the coordinates of a wave source based on the differences in the time-of-flights from a single transmitter to various receivers fixed in 3D space. The formulation is closed form linear, and estimates the speed of sound at every ranging operation. This leads to a robust system that is insensitive to changes in the environmental conditions. Typical applications that will benefit from this technology are 3D position sensing systems that may be used in robotics, navigation of autonomously guided vehicles, tracking of objects for virtual reality cells, and vibration analysis
In this article, we deal with the problem of increasing the accuracy of the automatic determination ...
A novel design of a three dimensional localiser intended for autonomous robot vehicles is presented....
In relative positioning systems, with the aim of estimating object positions, distances among them a...
3D positioning systems typically use actual time-of-flights for triangulation to determine the posit...
This work addresses a method for location of a wave source by observing the wave as it reaches vario...
This work addresses 3D position sensing systems that estimate the location of a wave source by trian...
A novel 3D position estimation system has been developed that uses the difference in the time-of-arr...
This paper provides a genetic algorithm-based approach to calculate the optimal placement of receive...
We use four sound sources to dynamically calculate a sensor’s location in three dimensions. Each so...
This paper presents an analysis of the main sources of error in a 3D-positioning system using ultra...
This paper describes an iterative Kalman Filter to increase the accuracy of a dynamic 3D position es...
This paper introduces an ultrasonic 3D position measurement system that will estimate the location o...
Abstract: This paper suggests an algorithm that can detect the direction of sound source at real tim...
Underground robots are potentially helpful in many application domains, including geotechnical engin...
This study proposes a method for concurrently determining the position and velocity of a moving obje...
In this article, we deal with the problem of increasing the accuracy of the automatic determination ...
A novel design of a three dimensional localiser intended for autonomous robot vehicles is presented....
In relative positioning systems, with the aim of estimating object positions, distances among them a...
3D positioning systems typically use actual time-of-flights for triangulation to determine the posit...
This work addresses a method for location of a wave source by observing the wave as it reaches vario...
This work addresses 3D position sensing systems that estimate the location of a wave source by trian...
A novel 3D position estimation system has been developed that uses the difference in the time-of-arr...
This paper provides a genetic algorithm-based approach to calculate the optimal placement of receive...
We use four sound sources to dynamically calculate a sensor’s location in three dimensions. Each so...
This paper presents an analysis of the main sources of error in a 3D-positioning system using ultra...
This paper describes an iterative Kalman Filter to increase the accuracy of a dynamic 3D position es...
This paper introduces an ultrasonic 3D position measurement system that will estimate the location o...
Abstract: This paper suggests an algorithm that can detect the direction of sound source at real tim...
Underground robots are potentially helpful in many application domains, including geotechnical engin...
This study proposes a method for concurrently determining the position and velocity of a moving obje...
In this article, we deal with the problem of increasing the accuracy of the automatic determination ...
A novel design of a three dimensional localiser intended for autonomous robot vehicles is presented....
In relative positioning systems, with the aim of estimating object positions, distances among them a...