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Fatma Zeynep Temel

4 accepted papers

2024

DeltaHands: A Synergistic Dexterous Hand Framework Based on Delta Robots

RA-L 2024

Dexterous robotic manipulation in unstructured environments can aid in everyday tasks such as cleaning and caretaking. Anthropomorphic robotic hands are highly dexterous and theoretically well-suited for working in human domains, but their complex designs and dynamics often make them difficult to co

Cited by 13SourceScholar
2024

Enhancing Dexterity in Robotic Manipulation via Hierarchical Contact Exploration

RA-L 2024

Planning robot dexterity is challenging due to the non-smoothness introduced by contacts, intricate fine motions, and ever-changing scenarios. We present a hierarchical planning framework for dexterous robotic manipulation (HiDex). This framework explores in-hand and extrinsic dexterity by leveragin

Cited by 42SourceScholar
2023

RevLock: A Reversible Self-Locking Mechanism Driven by Linear Actuators for Foldable Robots and Systems

RA-L 2023

The designs of origami-and kirigami-inspired robots enable configurations from 2D to 3D shapes, lightweight systems, and take advantage of rapid fabrication techniques. These features have been explored for robotics in applications ranging from aerospace to medical devices. However, achieving revers

Cited by 0SourceScholar
2020

Tunable Multi-Modal Locomotion in Soft Dielectric Elastomer Robots

RA-L 2020

Soft robots require strong, yet flexible actuators for locomotion and manipulation tasks in unstructured environments. Dielectric elastomer actuators (DEAs) are well suited for these challenges in soft robotics because they operate as compliant capacitors and directly convert electrical energy into

Cited by 53SourceScholar