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Daniel Soto

4 accepted papers

2025

Addition of a Peristaltic Wave Improves Multi-Legged Locomotion Performance on Complex Terrains

ICRA 2025

Characterized by their elongate bodies and relatively simple legs, multi-legged robots have the potential to locomote through complex terrains for applications such as search-and-rescue and terrain inspection. Prior work has developed effective and reliable locomotion strategies for multilegged robo

Cited by 0SourceScholar
2025

Effective Self-Righting Strategies for Elongate Multi-Legged Robots

ICRA 2025

Centipede-like robots offer an effective and robust solution to navigation over complex terrain with minimal sensing. However, when climbing over obstacles, such multi-legged robots often elevate their center-of-mass into unstable configurations, where even moderate terrain uncertainty can cause tip

Cited by 2SourceScholar
2025

Steering Elongate Multi-legged Robots by Modulating Body Undulation Waves

IROS 2025

Centipedes exhibit great maneuverability in diverse environments due to their many legs and body-driven control. By leveraging similar morphologies and control strategies, their robotic counterparts also demonstrate effective terrestrial locomotion. However, the success of these multi-legged robots

Cited by 3SourceScholar
2024

Learning manipulation of steep granular slopes for fast Mini Rover turning

ICRA 2024poster

Future planetary exploration missions will require reaching challenging regions such as craters and steep slopes. Such regions are ubiquitous and present science-rich targets potentially containing information regarding the planet’s internal structure. Steep slopes consisting of low-cohesion regolit…

Cited by 2SourceScholar