Daniel Nicolas Hofstadler
Orcid: 0000-0003-1658-164X
According to our database1,
Daniel Nicolas Hofstadler
authored at least 18 papers
between 2015 and 2024.
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Bibliography
2024
Autonomous tracking of honey bee behaviors over long-term periods with cooperating robots.
Sci. Robotics, 2024
Biohybrid Superorganisms - On the Design of a Robotic System for Thermal Interactions With Honeybee Colonies.
IEEE Access, 2024
2023
2022
Frontiers Robotics AI, 2022
2021
Proceedings of the 2021 Conference on Artificial Life, 2021
2020
Remote. Sens., 2020
2019
Toward a theory of collective resource distribution: a study of a dynamic morphogenesis controller.
Swarm Intell., 2019
2018
Artificial Plants - Vascular Morphogenesis Controller-guided growth of braided structures.
CoRR, 2018
A robot to shape your natural plant: the machine learning approach to model and control bio-hybrid systems.
Proceedings of the Genetic and Evolutionary Computation Conference, 2018
Morphogenesis as a Collective Decision of Agents Competing for Limited Resource: A Plants Approach.
Proceedings of the Swarm Intelligence - 11th International Conference, 2018
2017
Evolved Control of Natural Plants: Crossing the Reality Gap for User-Defined Steering of Growth and Motion.
ACM Trans. Auton. Adapt. Syst., 2017
Flora robotica - An Architectural System Combining Living Natural Plants and Distributed Robots.
CoRR, 2017
Vascular morphogenesis controller: a generative model for developing morphology of artificial structures.
Proceedings of the Genetic and Evolutionary Computation Conference, 2017
Development of morphology based on resource distribution: Finding the shortest path in a maze by vascular morphogenesis controller.
Proceedings of the Fourteenth European Conference Artificial Life, 2017
2016
Vascular Morphogenesis Controller: A Distributed Controller for Growing Artificial Structures.
Proceedings of the 2016 IEEE 1st International Workshops on Foundations and Applications of Self* Systems (FAS*W), 2016
An Evolutionary Robotics Approach to the Control of Plant Growth and Motion: Modeling Plants and Crossing the Reality Gap.
Proceedings of the 10th IEEE International Conference on Self-Adaptive and Self-Organizing Systems, 2016
Self-Organized Construction with Continuous Building Material: Higher Flexibility Based on Braided Structures.
Proceedings of the 2016 IEEE 1st International Workshops on Foundations and Applications of Self* Systems (FAS*W), 2016
2015
Proceedings of the IEEE Symposium Series on Computational Intelligence, 2015