Hanna Matusik

dblp:345/2163 · DBLP profile ↗
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1ranked-venue papers
1as first author
1since 2021 · last 2024
—ORCID · unresolved

Domains — the database's venue-derived domains; a paper can count in several

Artificial intelligence and machine learning · 1 · 1 first-author · 1 since 2021Systems, architecture and hardware · 1 · 1 first-author · 1 since 2021

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Artificial intelligence
1 paper
Robot manipulation · 87% Motion planning and robot control · 13%
Computer graphics and multimedia
1 paper
Computational fabrication · 100%

Topics — the 5 heaviest of 5, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Robotics › Robot manipulation
robotic hand design
0.812024
Directly 3D Printed, Pneumatically Actuated Multi-Material Robotic Hand · ICRA 2024
Robotics › Robot manipulation › robotic hand
soft robotic hand
0.812024
Directly 3D Printed, Pneumatically Actuated Multi-Material Robotic Hand · ICRA 2024
Computational fabrication
additive manufacturing
0.812024
Directly 3D Printed, Pneumatically Actuated Multi-Material Robotic Hand · ICRA 2024
Computational fabrication › additive manufacturing
multi-material 3d printing
0.812024
Directly 3D Printed, Pneumatically Actuated Multi-Material Robotic Hand · ICRA 2024
Robotics › Motion planning and robot control
teleoperation
0.212024
Directly 3D Printed, Pneumatically Actuated Multi-Material Robotic Hand · ICRA 2024

Methods — techniques the papers use, named apart from their topics

pneumatic actuation · 1.5
YearPublicationVenuePosition
2024 Directly 3D Printed, Pneumatically Actuated Multi-Material Robotic Hand
abstract
Soft robotic manipulators with many degrees of freedom can carry out complex tasks safely around humans. However, manufacturing of soft robotic hands with several degrees of freedom requires a complex multi-step manual process, which significantly increases their cost. We present a design of a multi-material 15 DoF robotic hand with five fingers including an opposable thumb. Our design has 15 pneumatic actuators based on a series of hollow chambers that are driven by an external pressure system. The thumb utilizes rigid joints and the palm features internal rigid structure and soft skin. The design can be directly 3D printed using a multi-material additive manufacturing process without any assembly process and therefore our hand can be manufactured for less than 300 dollars. We test the hand in conjunction with a low-cost vision-based teleoperation system on different tasks.
Hanna Matusik, Chao Liu 0021, Daniela Rus
ICRA1