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Master Thesis: Long-term Global Mapping for Autonomous Outdoor Navigation (Stuttgart, DE, 70569) @ Fraunhofer-Gesellschaft

Stuttgart, DE, 70569OnsiteFull-time
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Call for applications for the field of study such as: automation technology, electrical engineering, computer science, cybernetics, mechanical engineering, mathematics, mechatronics, physics, control engineering, software design, software engineering, technical computer science or similar. In the research group navigation of mobile robots, we develop autonomous, mobile robots for a variety of outdoor applications, such as agriculture, forestry and logistics. We focus on developing both an autonomous outdoor navigation solution and the hardware of the robots. Hier sorgen Sie für Veränderung Maintaining and updating a consistent global costmap is essential for mobile robots operating in big, unstructured and highly-dynamic outdoor environments, as they allow the robot to plan long-range, environment-aware routes and avoid obstacles effectively over extended distances. The environments where the robot operates are expected to experience large temporal variations due to weather conditions, seasonal changes, new/modified infrastructure, and dynamic obstacles. Therefore, the mapping approach must adapt accordingly, distinguishing between permanent structural changes and temporary variations, ensuring that only relevant static features are integrated over time. The development of a robust mapping framework presents two main challenges. First, it must handle the uncertainty and temporal inconsistency of the localization estimates. Loop closures or other optimization steps in the localization module can introduce drastic corrections to the absolute poses of previous timestamps, requiring the mapping framework to update the map accordingly. Second, it must handle dynamic obstacles and temporary changes, ensuring they are not added to the global static map representation. The following master thesis aims to resolve the previously stated challenges, developing a robust mapping framework that allows for accurate and consistent online map growth during exploratory tasks while efficiently adapting the map to reflect structural changes during long-running robot operations. Hiermit bringen Sie sich ein In this master thesis you will develop a robust mapping framework capable of handling localization uncertainty and pose corrections, dynamic environments and long-term changes. You will evaluate different submap-based representations that allow for incremental map growth during exploration while ensuring consistency with the robot’s estimated trajectory from the localization module. You will also evaluate different map update strategies that enable adaptation to permanent structural changes while remaining robust to temporary or dynamic variations. You will evaluate the approaches based on scalability and memory and computation efficiency for the online use on the robot. You will then implement your solution inside our ROS2, C++ navigation stack and integrate it with existing components such as the LiDAR-Inertial localization module and the Nav2 Framework. Its performance will then be tested both in simulation and in real-world scenarios with our mobile CURT robots. From You Valid enrollment at a German university or college Background in Computer Science, Software Engineering, Mechanical Engineering, Mechatronics or similar Programming knowledge and experience Experience with ROS is a plus Analytical mindset Enthusiasm for mobile robotics Fluent in English or German Was wir für Sie bereithalten Cutting-edge technology in the field of outdoor mobile robotics Hands on with our robots in Stuttgart Take on responsibility and freedom to implement your own ideas Work with the best students in their discipline Die Vergütung erfolgt je nach Qualifikation. Wir wertschätzen und fördern die Vielfalt der Kompetenzen unserer Mitarbeitenden und begrüßen daher alle Bewerbungen – unabhängig von Alter, Geschlecht, Nationalität, ethnischer und sozialer Herkunft, Religion, Weltanschauung, Behinderung sowie sexueller Orientierung und Identität. Schwerbehinderte Menschen werden bei gleicher Eignung bevorzugt eingestellt. Unsere Aufgaben sind vielfältig und anpassbar – für Bewerber*innen mit Behinderung finden wir gemeinsam Lösungen, die ihre Fähigkeiten optimal fördern. Mit ihrer Fokussierung auf zukunftsrelevante Schlüsseltechnologien sowie auf die Verwertung der Ergebnisse in Wirtschaft und Industrie spielt die Fraunhofer-Gesellschaft eine zentrale Rolle im Innovationsprozess. Als Wegweiser und Impulsgeber für innovative Entwicklungen und wissenschaftliche Exzellenz wirkt sie mit an der Gestaltung unserer Gesellschaft und unserer Zukunft. Bereit für Veränderung? Dann bewerben Sie sich jetzt, und machen Sie einen Unterschied! Nach Eingang Ihrer Online-Bewerbung erhalten Sie eine automatische Empfangsbestätigung. Dann melden wir uns schnellstmöglich und sagen Ihnen, wie es weitergeht. Frau Lisa Schäfer Recruiting +49 711 970-3681 [email protected] Fraunhofer-Institut für Produktionstechnik und Automatisierung IPA www.ipa.fraunhofer.de Kennziffer: 85221 Bewerbungsfrist:

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