paper-with-me

홈 › Papers

Bio-inspired tail oscillation enables robot fast crawling on deformable granular terrains

2025-09-15 · Shipeng Liu, Meghana Sagare, Shubham Patil, Feifei Qian arxiv

Deformable substrates such as sand and mud present significant challenges for terrestrial robots due to complex robot-terrain interactions. Inspired by mudskippers, amphibious animals that naturally adjust their tail morphology and movement jointly to navigate such environments, we investigate how tail design and control can jointly enhance flipper-driven locomotion on granular media. Using a bio-inspired robot modeled after the mudskipper, we experimentally compared locomotion performance between idle and actively oscillating tail configurations. Tail oscillation increased robot speed by 67% and reduced body drag by 46%. Shear force measurements revealed that this improvement was enabled by tail oscillation fluidizing the substrate, thereby reducing resistance. Additionally, tail morphology strongly influenced the oscillation strategy: designs with larger horizontal surface areas leveraged the oscillation-reduced shear resistance more effectively by limiting insertion depth. Based on these findings, we present a design principle to inform tail action selection based on substrate strength and tail morphology. Our results offer new insights into tail design and control for improving robot locomotion on deformable substrates, with implications for agricultural robotics, search and rescue, and environmental exploration.

📄 PDF Abstract BibTeX arXiv:2509.12468

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Quadrature Oscillation System for Coordinated Motion in Crawling Origami Robot

2026-03-24 · Sean Liu, Ankur Mehta, Wenzhong Yan arxiv

Origami-inspired robots offer rapid, accessible design and manufacture with diverse functionalities. In particular, origami robots without conventional electronics have the unique advantage of functioning in extreme envi…

SpikingSoft: A Spiking Neuron Controller for Bio-inspired Locomotion with Soft Snake Robots

2025-01-31 · Chuhan Zhang, Cong Wang, Wei Pan, Cosimo Della Santina

Inspired by the dynamic coupling of moto-neurons and physical elasticity in animals, this work explores the possibility of generating locomotion gaits by utilizing physical oscillations in a soft snake by means of a low-…

reinforcement-learningReinforcement Learning

Generating Oscillation Activity with Echo State Network to Mimic the Behavior of a Simple Central Pattern Generator

2023-06-19 · Tham Yik Foong, Danilo Vasconcellos Vargas

This paper presents a method for reproducing a simple central pattern generator (CPG) using a modified Echo State Network (ESN). Conventionally, the dynamical reservoir needs to be damped to stabilize and preserve memory…

Time Series

Inter-state switching in stochastic gene expression: Exact solution, an adiabatic limit and oscillations in molecular distributions

2018-08-23 · K. G. Petrosyan

We consider the stochastic gene expression process with inter-state flip-flops. An exact steady-state solution to the master equation is calculated. One of the main goals in this paper is to investigate whether the proba…

Gaussian Processes

Optimal control of differentially flat underactuated planar robots in the perspective of oscillation mitigation

2026-03-16 · Stefano Lovato, Michele Tonan, Matteo Bottin, Matteo Massaro 외 arxiv

Underactuated robots are characterized by a larger number of degrees of freedom than actuators and if they are designed with a specific mass distribution, they can be controlled by means of differential flatness theory. …