Current navigation technologies are relying on global navigation satellite system (GNSS) information. As in terms of reliability and precision next-generation autonomous vehicle requirements cannot be fully satisfied by GNSS, a sensor information fusion must be employed, leading to the exploration of new positioning methods. In this work, a reliable relative positioning solution in GNSS-challenged areas is investigated, using a combination of signals of opportunity (SOPs), inertial, and optical flow data. The proposed real-time relative positioning system exploits the fused data in the absence of GNSS signals for localization, employing a tracking algorithm to estimate the agent’s trajectory in space and time. Extensive outdoor experiments ...
For many applications in Intelligent Transport Systems (ITS), the position and heading information o...
For many applications in Intelligent Transport Systems (ITS), the position and heading information o...
Positional real-time data is an important part of a cooperative intelligent transportation system (C...
The global navigation satellite system (GNSS) is primarily employed for positioning by most modern n...
For reliable operation, next-generation autonomous agents will need enhanced situational perception ...
In addition to automatic or semi-automatic guidance of individual machines, guidance systems for swa...
Abstract Multiple unmanned aerial vehicle (UAV) systems have attracted extensive research interest f...
This paper explores the unique benefits that can be obtained from a tight integration of a GNSS sens...
Uncrewed aerial vehicles (UAVs) are continuously gaining popularity in a wide spectrum of applicatio...
This paper presents an algorithm for improving navigation performance of an Unmanned Aerial Vehicle ...
A Pseudo-satellite system that transmits signals similar to GNSS can provide positioning services in...
Advanced driver assistance systems play an important role in increasing the safety on today's roads....
This paper discusses an approach conceived to improve navigation performance of small Unmanned Aeria...
© 2018 Dr. Milad RamezaniReal-time, accurate and seamless localization forms the backbone of various...
Connected and Autonomous Vehicles (CAVs) rely on Global Navigation Satellite Systems (GNSS), e.g., t...
For many applications in Intelligent Transport Systems (ITS), the position and heading information o...
For many applications in Intelligent Transport Systems (ITS), the position and heading information o...
Positional real-time data is an important part of a cooperative intelligent transportation system (C...
The global navigation satellite system (GNSS) is primarily employed for positioning by most modern n...
For reliable operation, next-generation autonomous agents will need enhanced situational perception ...
In addition to automatic or semi-automatic guidance of individual machines, guidance systems for swa...
Abstract Multiple unmanned aerial vehicle (UAV) systems have attracted extensive research interest f...
This paper explores the unique benefits that can be obtained from a tight integration of a GNSS sens...
Uncrewed aerial vehicles (UAVs) are continuously gaining popularity in a wide spectrum of applicatio...
This paper presents an algorithm for improving navigation performance of an Unmanned Aerial Vehicle ...
A Pseudo-satellite system that transmits signals similar to GNSS can provide positioning services in...
Advanced driver assistance systems play an important role in increasing the safety on today's roads....
This paper discusses an approach conceived to improve navigation performance of small Unmanned Aeria...
© 2018 Dr. Milad RamezaniReal-time, accurate and seamless localization forms the backbone of various...
Connected and Autonomous Vehicles (CAVs) rely on Global Navigation Satellite Systems (GNSS), e.g., t...
For many applications in Intelligent Transport Systems (ITS), the position and heading information o...
For many applications in Intelligent Transport Systems (ITS), the position and heading information o...
Positional real-time data is an important part of a cooperative intelligent transportation system (C...