Published October 28, 2022 | Version v1

A Comparative Analysis on Genome Pleiotropy for Evolved Soft Robots

Description

Biological evolution shapes the body and brain of living creatures together over time. By contrast, in evolutionary robotics, brain-body co-optimization remains challenging. Conflicting mutations cause dissociation between morphology and control, which leads to premature convergence. Recent works have proposed algorithmic modifications to mitigate the impact of conflicting mutations. However, the importance of genetic design remains underexposed. Current approaches are divided between a single, pleiotropic genetic encoding and two isolated encodings representing morphology and control. This design choice is commonly made ad hoc, causing a lack of consistency for practitioners. To standardize this design, we performed a comparative analysis between these two configurations and two previously unexplored alternatives on a soft robot locomotion task.

Files

fears_2022_poster.pdf

Files (780.7 kB)

Name Size Download all
md5:b68e997ef2fee9b4bf332bfcf6326673
780.7 kB Preview Download