Federico Pigozzi
Papers
11
Total Citations
146
H-Index
7
About
Federico Pigozzi is a computational researcher whose work sits at the fascinating intersection of evolutionary computation, soft robotics, and artificial life. His research focuses primarily on voxel-based soft robots (VSRs) — modular, deformable artificial agents that serve as powerful platforms for exploring fundamental questions about embodied intelligence, biodiversity, and adaptive behavior. Pigozzi's most influential contribution, "Biodiversity in Evolved Voxel-Based Soft Robots" (2021, 49 citations), addresses how evolutionary algorithms can produce diverse yet equally capable robot morphologies, drawing inspiration from the resilience of biological ecosystems. This theme of bio-inspired diversity runs throughout his portfolio, with follow-up work examining the factors that shape both effectiveness and variety in evolved modular systems. A particularly distinctive strand of his research involves Hebbian learning — biologically plausible synaptic plasticity rules — applied to robot controllers, enabling agents to adapt during their lifetimes rather than relying solely on evolutionary optimization. His work on self-attention-based modular controllers further demonstrates his commitment to eliminating unrealistic engineering assumptions, such as explicit inter-module communication. With over 140 cumulative citations across a compact but impactful body of work, Pigozzi has established himself as a thoughtful voice in evolutionary robotics, contributing both technical innovations and broader reflections on the field's trajectory.
Research Focus
Key Achievements
Top Papers
- 1Biodiversity in evolved voxel-based soft robots49 citations · 2021
- 2
- 3Factors Impacting Diversity and Effectiveness of Evolved Modular Robots18 citations · 2023
- 4Evolving Hebbian Learning Rules in Voxel-Based Soft Robots14 citations · 2022
- 5
- 6Evolving Hebbian Learning Rules in Voxel-based Soft Robots7 citations · 2021
- 7
- 8Robots: the Century Past and the Century Ahead6 citations · 2022
- 9Evolving Hebbian Learning Rules in Voxel-based Soft Robots4 citations · 2021
- 10Shape Change and Control of Pressure-based Soft Agents3 citations · 2022