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SIGGRAPH 2026VR, Haptics & Hardware

Retrofitting Existing 3D Objects with Surface-Conforming Capacitive Sensing

Andela Ilic, Junpeng Gao, Zhipeng Li 0001, Yijing Jiang, Rachel Schuchert, Manuel Meier, Philipp Herholz, Christian Holz 0001

PDF 由论文原始站点提供,PaperCompass 不保存论文文件。DOI 10.1145/3799902.3811213 ↗

摘要

Augmenting the surface of 3D objects with capacitive sensing is particularly challenging when their volumes cannot be modified. In this paper, we present a computational fabrication pipeline that retrofits surface-only sensor layouts to 3D geometries for multi-touch interaction. Our system scans real-world objects to obtain their 3D mesh, generates and optimizes a 3D sensor design of drive and sense lines for mutual-capacitance sensing that complies with physical and hardware sensing constraints, and unfolds them into individual 2D stencils that can be cut from conductive material. Our fabrication pipeline cuts these from thin copper foil with a vinyl cutter and then assists manual sensor attachment by projecting the sensor design onto the dynamically registered real-world object. We connect the resulting electrode mesh to a mutual-capacitance scanning controller and resolve touch interaction in real time. We demonstrate our approach with four 3D geometries and evaluate our method and fabrication pipeline on them.