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Florian Berlinger

6 accepted papers

2022

A Hybrid PSO Algorithm for Multi-robot Target Search and Decision Awareness

IROS 2022poster

Groups of robots can be tasked with identifying a location in an environment where a feature cue is past a threshold, then disseminating this information throughout the group – such as identifying a high-enough elevation location to place a communications tower. This is a continuous-cue target searc…

Cited by 11SourceScholar
2022

Impressionist Algorithms for Autonomous Multi-Robot Systems: Flocking as a Case Study

IROS 2022poster

Robot swarms have the potential to revolutionize areas ranging from warehouse management and agriculture to underwater and space exploration. However, there remains a substantial gap between theory and robot implementation. While algorithms might assume reliable communication, perfect sensing, and i…

Cited by 3SourceScholar
2021

Self-Organized Evasive Fountain Maneuvers with a Bioinspired Underwater Robot Collective

ICRA 2021poster

Several animal species self-organize into large groups to leverage vital behaviors such as foraging, construction, or predator evasion. With the advancement of robotics and automation, engineered multi-agent systems have been inspired to achieve similarly high degrees of scalable, robust, and adapta…

Cited by 19SourceScholar
2020

Tunable Multi-Modal Locomotion in Soft Dielectric Elastomer Robots

RA-L 2020

Soft robots require strong, yet flexible actuators for locomotion and manipulation tasks in unstructured environments. Dielectric elastomer actuators (DEAs) are well suited for these challenges in soft robotics because they operate as compliant capacitors and directly convert electrical energy into

Cited by 53SourceScholar
2018

A Modular Dielectric Elastomer Actuator to Drive Miniature Autonomous Underwater Vehicles

ICRA 2018poster

In this paper we present the design of a fin-like dielectric elastomer actuator (DEA) that drives a miniature autonomous underwater vehicle (AUV). The fin-like actuator is modular and independent of the body of the AUV. All electronics required to run the actuator are inside the 100 mm long 3D-print…

Cited by 84SourceScholar
2018

Robust Maneuverability of a Miniature, Low-Cost Underwater Robot Using Multiple Fin Actuation

RA-L 2018

In this letter, we present the design of a miniature (100 mm) autonomous underwater robot that is low-cost ($ 100), easy to manufacture, and highly maneuverable. A key aspect of the robot design that makes this possible is the use of low-cost magnet-in-coil actuators, which have a small profile and

Cited by 43SourceScholar