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Zach J Patterson

5 accepted papers

2025

Improving Efficiency of Sampling-based Motion Planning via Message-Passing Monte Carlo

CoRL 2025poster

Sampling-based motion planning methods, while effective in high-dimensional spaces, often suffer from inefficiencies due to irregular sampling distributions, leading to suboptimal exploration of the configuration space. In this paper, we propose an approach that enhances the efficiency of these meth…

Cited by 0SourceScholar
2024

Modeling and Control of Intrinsically Elasticity Coupled Soft-Rigid Robots

ICRA 2024poster

While much work has been done recently in the realm of model-based control of soft robots and soft-rigid hybrids, most works examine robots that have an inherently serial structure. While these systems have been prevalent in the literature, there is an increasing trend toward designing soft-rigid hy…

Cited by 0SourceScholar
2023

A Fabrication and Simulation Recipe for Untethering Soft-Rigid Robots with Cable-Driven Stiffness Modulation

IROS 2023poster

We explore the idea of robotic mechanisms that can shift between soft and rigid states, with the long-term goal of creating robots that marry the flexibility and robustness of soft robots with the strength and precision of rigid robots. We present a simple yet effective method to achieve large and r…

Cited by 1SourceScholar
2020

An Untethered Brittle Star-Inspired Soft Robot for Closed-Loop Underwater Locomotion

IROS 2020poster

Soft robots are capable of inherently safer interactions with their environment than rigid robots since they can mechanically deform in response to unanticipated stimuli. However, their complex mechanics can make planning and control difficult, particularly with tasks such as locomotion. In this wor…

Cited by 47SourceScholar