A new paper has been accepted for publication in Artificial Life and Robotics, Springer. The selected article is:
Filippo Sanfilippo, Øyvind Stavdahl and Pål Liljebäck, “ SnakeSIM: a ROS-based Control and Simulation Framework for Perception-Driven Obstacle-Aided Locomotion of Snake Robots,” Artificial Life and Robotics, Springer, 2018, DOI: 10.1007/s10015-018-0458-6.
Biological snakes are capable of exploiting roughness in the terrain for locomotion. This feature allows them to adapt to diﬀerent types of environments. Snake robots that can mimic this behaviour could be ﬁtted with sensors and used for trans-porting tools to hazardous or conﬁned areas that other robots and humans are unable to access. Snake robot locomotion in a cluttered environment where the snake robot utilises a sensory–perceptual system to perceive the surrounding operational environment for means of propulsion can be deﬁned as perception-driven obstacle-aided locomotion (POAL). The initial testing of new control methods for POAL in a physical environment using a real snake robot imposes challenging requirements on both the robot and the test environment in terms of robustness and predictability. This paper introduces SnakeSIM, a virtual rapid-prototyping framework that allows researchers for the design and simulation of POAL more safely, rapidly and eﬃciently. SnakeSIM is based on the robot operating system (ROS) and it allows for simulating the snake robot model in a virtual environment cluttered with obstacles. The simulated robot can be equipped with diﬀerent sensors. Tactile perception can be achieved using contact sensors to retrieve forces, torques, contact positions and contact normals. A depth camera can be attached to the snake robot head for visual perception purposes. Furthermore, SnakeSIM allows for exploiting the large variety of robotics sensors that are supported by ROS. The framework can be transparently integrated with a real robot. To demonstrate the potential of SnakeSIM, a possible control approach for POAL is considered as a case study.
I thank all my co-authors and students. I congratulate all of them for their contribution.