Abstract
Many quadrupedal animals use lateral degrees of freedom in their backs to assist locomotion. This paper seeks to use a robotic model to demonstrate that back bending assists not only forward motion, but also lateral and turning motions. We present a simple planner that uses geometric mechanics to prescribe gaits that coordinate both leg movements and back bending motion. Using these geometric tools, we show that back-bending can improve stride displacement in the forward, rotational, and lateral directions. Interestingly, we observe that the animal’s (salamander, Salamandra salamandra) back-bending is close to our calculated back-bending to improve forward displacement. In addition to locomotion performance improvement, back bending can also expand the target position space a robot can reach within one gait cycle. Our results are verified by conducting experiments with a robot moving on granular materials.
Cite
CITATION STYLE
Zhong, B., Aydin, Y. O., Gong, C., Sartoretti, G., Wu, Y., Rieser, J., … Choset, H. (2018). Coordination of back bending and leg movements for quadrupedal locomotion. In Robotics: Science and Systems. Massachusetts Institute of Technology. https://doi.org/10.15607/RSS.2018.XIV.020
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.