DLRAD – a new vision and mapping benchmark dataset for autonomous driving is under development for the validation of intelligent driving algorithms. Stationary, mobile, and airborne sensors monitored simultaneously the environment around a reference vehicle, which was driving on urban, suburb and rural roads in and around the city of Braunschweig/Germany. Airborne images were acquired with the DLR 4k sensor system mounted on a helicopter. The DLR research car FASCarE is equipped with the latest sensor technology like front/rear radar, ultrasound and laser sensors, optical single and stereo cameras, and GNSS/IMU. Additionally, stationary terrestrial sensors like induction loops, optical mono and stereo cameras, radar and laser scanners...
University Transportation Centers Programhttps://doi.org/10.5281/zenodo.57382512021ZIPDatasetWang, Y...
During recent years, Autonomous vehicles are considered one of the most important technology used i...
An autonomous vehicle (AV) requires an accurate perception of its surrounding environment to operate...
DLRAD - a new vision and mapping benchmark dataset for autonomous driving is now ready for the devel...
Autonomous driving is currently one of the most anticipated future technologies of the automotive wo...
Today, autonomous driving is considered a branch of artificial intelligence in which various technol...
The tutorial will focus on recent advances in sensors and on-board instrumentation for new vehicle g...
Combinations of advanced driver assistance systems (ADAS) enabling semi-autonomous driving are now b...
The next-generation high-resolution automotive radar (4D radar) can provide additional elevation mea...
Advances in information and signal processing technologies have a significant impact on autonomous d...
We present a novel dataset captured from a BMW X5 test carrier within the German research project KI...
The upraise of autonomous driving technologies asks for maps characterized bya broad range of featur...
Over the last decades, the development of Advanced Driver Assistance Systems (ADAS) has become a cri...
Since DARPA started Grand Challenges in 2004 and Urban Challenges in 2007, autonomous driving has be...
Vision Based systems have become an integral part when it comes to autonomous driving. The autonomou...
University Transportation Centers Programhttps://doi.org/10.5281/zenodo.57382512021ZIPDatasetWang, Y...
During recent years, Autonomous vehicles are considered one of the most important technology used i...
An autonomous vehicle (AV) requires an accurate perception of its surrounding environment to operate...
DLRAD - a new vision and mapping benchmark dataset for autonomous driving is now ready for the devel...
Autonomous driving is currently one of the most anticipated future technologies of the automotive wo...
Today, autonomous driving is considered a branch of artificial intelligence in which various technol...
The tutorial will focus on recent advances in sensors and on-board instrumentation for new vehicle g...
Combinations of advanced driver assistance systems (ADAS) enabling semi-autonomous driving are now b...
The next-generation high-resolution automotive radar (4D radar) can provide additional elevation mea...
Advances in information and signal processing technologies have a significant impact on autonomous d...
We present a novel dataset captured from a BMW X5 test carrier within the German research project KI...
The upraise of autonomous driving technologies asks for maps characterized bya broad range of featur...
Over the last decades, the development of Advanced Driver Assistance Systems (ADAS) has become a cri...
Since DARPA started Grand Challenges in 2004 and Urban Challenges in 2007, autonomous driving has be...
Vision Based systems have become an integral part when it comes to autonomous driving. The autonomou...
University Transportation Centers Programhttps://doi.org/10.5281/zenodo.57382512021ZIPDatasetWang, Y...
During recent years, Autonomous vehicles are considered one of the most important technology used i...
An autonomous vehicle (AV) requires an accurate perception of its surrounding environment to operate...