Alert button
Picture for Thomas Herrmann

Thomas Herrmann

Alert button

TUM Autonomous Motorsport: An Autonomous Racing Software for the Indy Autonomous Challenge

Add code
Bookmark button
Alert button
May 31, 2022
Johannes Betz, Tobias Betz, Felix Fent, Maximilian Geisslinger, Alexander Heilmeier, Leonhard Hermansdorfer, Thomas Herrmann, Sebastian Huch, Phillip Karle, Markus Lienkamp, Boris Lohmann, Felix Nobis, Levent Ögretmen, Matthias Rowold, Florian Sauerbeck, Tim Stahl, Rainer Trauth, Frederik Werner, Alexander Wischnewski

Figure 1 for TUM Autonomous Motorsport: An Autonomous Racing Software for the Indy Autonomous Challenge
Figure 2 for TUM Autonomous Motorsport: An Autonomous Racing Software for the Indy Autonomous Challenge
Figure 3 for TUM Autonomous Motorsport: An Autonomous Racing Software for the Indy Autonomous Challenge
Figure 4 for TUM Autonomous Motorsport: An Autonomous Racing Software for the Indy Autonomous Challenge
Viaarxiv icon

Indy Autonomous Challenge -- Autonomous Race Cars at the Handling Limits

Add code
Bookmark button
Alert button
Feb 08, 2022
Alexander Wischnewski, Maximilian Geisslinger, Johannes Betz, Tobias Betz, Felix Fent, Alexander Heilmeier, Leonhard Hermansdorfer, Thomas Herrmann, Sebastian Huch, Phillip Karle, Felix Nobis, Levent Ögretmen, Matthias Rowold, Florian Sauerbeck, Tim Stahl, Rainer Trauth, Markus Lienkamp, Boris Lohmann

Figure 1 for Indy Autonomous Challenge -- Autonomous Race Cars at the Handling Limits
Figure 2 for Indy Autonomous Challenge -- Autonomous Race Cars at the Handling Limits
Figure 3 for Indy Autonomous Challenge -- Autonomous Race Cars at the Handling Limits
Figure 4 for Indy Autonomous Challenge -- Autonomous Race Cars at the Handling Limits
Viaarxiv icon

Real-Time Adaptive Velocity Optimization for Autonomous Electric Cars at the Limits of Handling

Add code
Bookmark button
Alert button
Dec 25, 2020
Thomas Herrmann, Alexander Wischnewski, Leonhard Hermansdorfer, Johannes Betz, Markus Lienkamp

Figure 1 for Real-Time Adaptive Velocity Optimization for Autonomous Electric Cars at the Limits of Handling
Figure 2 for Real-Time Adaptive Velocity Optimization for Autonomous Electric Cars at the Limits of Handling
Figure 3 for Real-Time Adaptive Velocity Optimization for Autonomous Electric Cars at the Limits of Handling
Figure 4 for Real-Time Adaptive Velocity Optimization for Autonomous Electric Cars at the Limits of Handling
Viaarxiv icon