Bayes filters, such as the Kalman and particle filters, have been used in sensor fusion to integrate two sources of information and obtain the best estimate of unknowns. The efficient integration of multiple sensors requires deep knowledge of their error sources. Some sensors, such as Inertial Measurement Unit (IMU), have complicated error sources. Therefore, IMU error modelling and the efficient integration of IMU and Global Navigation Satellite System (GNSS) observations has remained a challenge. In this paper, we developed deep Kalman filter to model and remove IMU errors and, consequently, improve the accuracy of IMU positioning. To achieve this, we added a modelling step to the prediction and update steps of the Kalman filter, so that ...
The endeavours in improving the performance of a conventional non-differential GPS/MEMS IMU tightly-...
One of the core issues of mobile measurement is the pose estimation of the carrier. The classic Glob...
GPS and Inertial Navigation Systems (INS) are increasingly used for positioning and attitude determi...
Bayes filters, such as the Kalman and particle filters, have been used in sensor fusion to integrate...
Tightly-coupled (TC) fusion of Inertial Measurement Units (IMUs) with Global Navigation Satellite Sy...
Precise position, velocity, and attitude is essential for self-driving cars and unmanned aerial vehi...
To enhance system reliability and mitigate the vulnerabilities of the Global Navigation Satellite Sy...
This paper presents a novel direct filtering approach to INS/GNSS (Inertial Navigation System / Glob...
An Extended Kalman Filter (EKF) is commonly used to fuse raw Global Navigation Satellite System (GNS...
The Satellite based navigation systems are often integrated with inertial navigationsystems in order...
A single low cost inertial measurement unit (IMU) is often used in conjunction with GPS to increase ...
Position determination using satellite navigation system has grown significantly. It provides geospa...
The Global Satellite Navigation System (GNSS) is widely adopted for common positioning system due to...
Inertial Measurement Unit (IMU) and Global Positioning System (GPS) receivers are sensors that are w...
The importance of research in Inertial Navigation Systems (INS) has been growing in recent years. Us...
The endeavours in improving the performance of a conventional non-differential GPS/MEMS IMU tightly-...
One of the core issues of mobile measurement is the pose estimation of the carrier. The classic Glob...
GPS and Inertial Navigation Systems (INS) are increasingly used for positioning and attitude determi...
Bayes filters, such as the Kalman and particle filters, have been used in sensor fusion to integrate...
Tightly-coupled (TC) fusion of Inertial Measurement Units (IMUs) with Global Navigation Satellite Sy...
Precise position, velocity, and attitude is essential for self-driving cars and unmanned aerial vehi...
To enhance system reliability and mitigate the vulnerabilities of the Global Navigation Satellite Sy...
This paper presents a novel direct filtering approach to INS/GNSS (Inertial Navigation System / Glob...
An Extended Kalman Filter (EKF) is commonly used to fuse raw Global Navigation Satellite System (GNS...
The Satellite based navigation systems are often integrated with inertial navigationsystems in order...
A single low cost inertial measurement unit (IMU) is often used in conjunction with GPS to increase ...
Position determination using satellite navigation system has grown significantly. It provides geospa...
The Global Satellite Navigation System (GNSS) is widely adopted for common positioning system due to...
Inertial Measurement Unit (IMU) and Global Positioning System (GPS) receivers are sensors that are w...
The importance of research in Inertial Navigation Systems (INS) has been growing in recent years. Us...
The endeavours in improving the performance of a conventional non-differential GPS/MEMS IMU tightly-...
One of the core issues of mobile measurement is the pose estimation of the carrier. The classic Glob...
GPS and Inertial Navigation Systems (INS) are increasingly used for positioning and attitude determi...