Yuecheng Peng

dblp:374/8603 · DBLP profile ↗
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4ranked-venue papers
2as first author
4since 2021 · last 2025
0009-0005-5769-7552ORCID · corroborated

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

Human-computer interaction and ubiquitous computing · 4 · 2 first-author · 4 since 2021
YearPublicationVenuePosition
2025 "A Tool for Freedom": Co-Designing Mobility Aid Improvements Using Personal Fabrication and Physical Interface Modules with Primarily Young Adults
Jerry Cao, Krish Jain, Julie Zhang, Yuecheng Peng, Shwetak N. Patel, Jennifer Mankoff
CHI4
2025 BioTube: Designing and Fabricating Biodegradable Hollow Tubular Devices Through Progressive Crosslinking Alginate
Yuecheng Peng, Mako Miyatake, Tyler L. Peng, Qiuyu Lu, Yue Yang 0005, Lining Yao
CHI1
2024 IntelliTex: Fabricating Low-cost and Washable Functional Textiles using A Double-coating Process
abstract
We present IntelliTex, a low-cost and highly accessible double-coating fabrication method for washable and reusable functional textiles with customized input functionalities. Specifically, off-the-shelf textiles are firstly coated with conductive carbon black using pen ink, which endows textiles with rich sensing capabilities, such as pressure, stretch, slide, and temperature. Secondly, textiles are coated with polyurethane to enhance the sensing stability over wash cycles for good reusability. To support user customization, we enrich the design space of double-coating by exploring various coating methods and diverse textiles to be coated. We further contribute a comprehensive library of input components and an online document to make our approach accessible to novice users. Finally, five application examples and a user study showcase the versatile functionalities and user accessibility of our method, with which we hope to support designers, makers, and researchers to easily create functional textiles ready to use in everyday life.
Yuecheng Peng, Danchang Yan, Yue Yang 0005, Ye Tao 0001, Lingyun Sun, Guanyun Wang
CHI1
2024 What's in a cable? Abstracting Knitting Design Elements with Blended Raster/Vector Primitives
abstract
In chart-based programming environments for machine knitting, patterns are specified at a low level by placing operations on a grid. This highly manual workflow makes it challenging to iterate on design elements such as cables, colorwork, and texture. While vector-based abstractions for knitting design elements may facilitate higher-level manipulation, they often include interdependencies which require stitch-level reconciliation. To address this, we contribute a new way of specifying knits with blended vector and raster primitives. Our abstraction supports the design of interdependent elements like colorwork and texture. We have implemented our blended raster/vector specification in a direct manipulation design tool where primitives are layered and rasterized, allowing for simulation of the resulting knit structure and generation of machine instructions. Through examples, we show how our approach enables higher-level manipulation of various knitting techniques, including intarsia colorwork, short rows, and cables. Specifically, we show how our tool supports the design of complex patterns including origami pleat patterns and capacitive sensor patches.
Hannah Twigg-Smith, Yuecheng Peng, Emily Whiting, Nadya Peek
UIST2