3D positioning systems typically use actual time-of-flights for triangulation to determine the position of a wave source. Problems, such as inherent time delays and synchronization of the receiver/transmitter pairs are prevalent in these systems. This paper presents a novel formulation for the estimation of the coordinates of an ultrasonic wave source based on the differences in the time-of-flights (TOFs) to various receivers fixed in an inertial frame of reference. A thorough analysis of the formulation and a 1D prototype are presented. Typical applications benefiting from this technology are position sensing systems that may be used in robotics, AGV guidance and navigation, virtual reality, and vibrations
Localization is the process of determining the current location of a target(s) within given coordina...
The necessity of navigation in people and mobile robots (MR) through specific environments (indoors ...
This study proposes a method for concurrently determining the position and velocity of a moving obje...
This paper presents a novel formulation for the estimation of the coordinates of a wave source based...
This work addresses 3D position sensing systems that estimate the location of a wave source by trian...
This work addresses a method for location of a wave source by observing the wave as it reaches vario...
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...
This paper introduces an ultrasonic 3D position measurement system that will estimate the location o...
This paper presents an analysis of the main sources of error in a 3D-positioning system using ultra...
This paper introduces ultrasonic 3D position measurement system that will estimate the location of a...
This paper describes an iterative Kalman Filter to increase the accuracy of a dynamic 3D position es...
Three dimensional (3D) positioning systems are used in many applications across a wide variety of fi...
Three dimensional (3D) positioning systems are used in many applications across a wide variety of fi...
Khyam, MO ORCiD: 0000-0002-1988-2328Three dimensional (3D) positioning systems are used in many appl...
Localization is the process of determining the current location of a target(s) within given coordina...
The necessity of navigation in people and mobile robots (MR) through specific environments (indoors ...
This study proposes a method for concurrently determining the position and velocity of a moving obje...
This paper presents a novel formulation for the estimation of the coordinates of a wave source based...
This work addresses 3D position sensing systems that estimate the location of a wave source by trian...
This work addresses a method for location of a wave source by observing the wave as it reaches vario...
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...
This paper introduces an ultrasonic 3D position measurement system that will estimate the location o...
This paper presents an analysis of the main sources of error in a 3D-positioning system using ultra...
This paper introduces ultrasonic 3D position measurement system that will estimate the location of a...
This paper describes an iterative Kalman Filter to increase the accuracy of a dynamic 3D position es...
Three dimensional (3D) positioning systems are used in many applications across a wide variety of fi...
Three dimensional (3D) positioning systems are used in many applications across a wide variety of fi...
Khyam, MO ORCiD: 0000-0002-1988-2328Three dimensional (3D) positioning systems are used in many appl...
Localization is the process of determining the current location of a target(s) within given coordina...
The necessity of navigation in people and mobile robots (MR) through specific environments (indoors ...
This study proposes a method for concurrently determining the position and velocity of a moving obje...