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Cynthia Sung

13 accepted papers

2025

MORF: Magnetic Origami Reprogramming and Folding System for Repeatably Reconfigurable Structures with Fold Angle Control

ICRA 2025

We present the Magnetic Origami Reprogram-ming and Folding System (MORF), a magnetically repro-grammable system capable of precise shape control, repeated transformations, and adaptive functionality for robotic applications. Unlike current self-folding systems, which often lack re-programmability or

Cited by 1SourceScholar
2023

CurveQuad: A Centimeter-Scale Origami Quadruped that Leverages Curved Creases to Self-Fold and Crawl with One Motor

IROS 2023poster

We present CurveQuad, a miniature curved origami quadruped that is able to self-fold and unfold, crawl, and steer, all using a single actuator. CurveQuad is designed for planar manufacturing, with parts that attach and stack sequentially on a flat body. The design uses 4 curved creases pulled by 2 p…

Cited by 1SourceScholar
2023

Design and Control of a Tunable-Stiffness Coiled-Spring Actuator

ICRA 2023poster

We propose a novel design for a lightweight and compact tunable stiffness actuator capable of stiffness changes up to 20x. The design is based on the concept of a coiled spring, where changes in the number of layers in the spring change the bulk stiffness in a near linear fashion. We present an elas…

Cited by 5SourceScholar
2022

Repeated Jumping with the REBOund: Self-Righting Jumping Robot Leveraging Bistable Origami-Inspired Design

ICRA 2022poster

Repeated jumping is crucial to the mobility of jumping robots. In this paper, we extend upon the REBOund jumping robot design, an origami-inspired jumping robot that uses the Reconfigurable Expanding Bistable Origami (REBO) pattern as its body. The robot design takes advantage of the pattern's bista…

Cited by 6SourceScholar
2022

TrussBot: Modeling, Design, and Control of a Compliant, Helical Truss of Tetrahedral Modules

ICRA 2022poster

Modular and truss robots offer the potential of high reconfigurability and great functional flexibility, but common implementations relying on rigid components often lead to highly complex actuation and control requirements. This paper introduces a new type of modular, compliant robot: TrussBot. Tru…

Cited by 1SourceScholar
2021

Soft Hybrid Aerial Vehicle via Bistable Mechanism

ICRA 2021poster

Unmanned aerial vehicles have been demonstrated successfully in a variety of tasks, including surveying and sampling tasks over large areas. These vehicles can take many forms. Quadrotors’ agility and ability to hover makes them well suited for navigating potentially tight spaces, while fixed wing a…

Cited by 13SourceScholar
2020

REBOund: Untethered Origami Jumping Robot with Controllable Jump Height

ICRA 2020poster

Origami robots are well-suited for jumping maneuvers because of their light weight and ability to incorporate actuation and control strategies directly into the robot body. However, existing origami robots often model fold patterns as rigidly foldable and fail to take advantage of deformation in an…

Cited by 25SourceScholar
2017

Functional co-optimization of articulated robots

ICRA 2017poster

We present parametric trajectory optimization, a method for simultaneously computing physical parameters, actuation requirements, and robot motions for more efficient robot designs. In this scheme, robot dimensions, masses, and other physical parameters are solved for concurrently with traditional m…

Cited by 75SourceScholar
2017

Self-folded soft robotic structures with controllable joints

ICRA 2017poster

This paper describes additive self-folding, an origami-inspired rapid fabrication approach for creating actuatable compliant structures. Recent work in 3-D printing and other rapid fabrication processes have mostly focused on rigid objects or objects that can achieve small deformations. In contrast,…

Cited by 12SourceScholar