Capacitive Touch Sensing on General 3D Surfaces
Gianpaolo Palma, Narges Pourjafarian, Jürgen Steimle, Paolo Cignoni
摘要
Mutual-capacitive sensing is the most common technology for detecting multi-touch, especially on flat and simple curvature surfaces. Its extension to a more complex shape is still challenging, as a uniform distribution of sensing electrodes is required for consistent touch sensitivity across the surface. To overcome this problem, we propose a method to adapt the sensor layout of common capacitive multi-touch sensors to more complex 3D surfaces, ensuring high-resolution, robust multi-touch detection. The method automatically computes a grid of transmitter and receiver electrodes with as regular distribution as possible over a general 3D shape. It starts with the computation of a proxy geometry by quad meshing used to place the electrodes through the dual-edge graph. It then arranges electrodes on the surface to minimize the number of touch controllers required for capacitive sensing and the number of input/output pins to connect the electrodes with the controllers. We reach these objectives using a new simplification and clustering algorithm for a regular quad-patch layout. The reduced patch layout is used to optimize the routing of all the structures (surface grooves and internal pipes) needed to host all electrodes on the surface and inside the object's volume, considering the geometric constraints of the 3D shape. Finally, we print the 3D object prototype ready to be equipped with the electrodes. We analyze the performance of the proposed quad layout simplification and clustering algorithm using different quad meshing and characterize the signal quality and accuracy of the capacitive touch sensor for different non-planar geometries. The tested prototypes show precise and robust multi-touch detection with good Signal-to-Noise Ratio and spatial accuracy of about 1mm.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper4
- eTactileKit: A Toolkit for Design Exploration and Rapid Prototyping of Electro-Tactile InterfacesPraneeth Bimsara Perera, Ravindu Madhushan Pushpakumara, Hiroyuki Kajimoto, Arata Jingu 等UIST 2025 · 被引用 6 次
- Grab-n-Go: On-the-Go Microgesture Recognition with Objects in HandChi-Jung Lee, Jiaxin Li, Tianhong Catherine Yu, Ruidong Zhang 等UbiComp 2025 · 被引用 4 次
- Understanding How Mobile Interactions Shape Grasp and Contact Patterns Beyond the TouchscreenCarolin Stellmacher, Leon Tristan Dratzidis, André Zenner, Iddo Yehoshua Wald 等CHI 2026 · 被引用 2 次
- Retrofitting Existing 3D Objects with Surface-Conforming Capacitive SensingAndela Ilic, Junpeng Gao, Zhipeng Li, Yijing Jiang 等SIGGRAPH 2026 · 被引用 1 次
它引用的顶会 Paper12
- MetaSense: Integrating Sensing Capabilities into Mechanical MetamaterialJun Gong, Olivia Seow, Cedric Honnet, Jack Forman 等UIST 2021 · 被引用 91 次
- Sprayable User Interfaces: Prototyping Large-Scale Interactive Surfaces with Sensors and DisplaysMichael Wessely, Ticha Sethapakdi, Carlos Castillo, Jackson C. Snowden 等CHI 2020 · 被引用 74 次
- Reliable feature-line driven quad-remeshingNico Pietroni, Stefano Nuvoli, Thomas Alderighi, Paolo Cignoni 等SIGGRAPH 2021 · 被引用 64 次
- MorphingCircuit: An Integrated Design, Simulation, and Fabrication Workflow for Self-morphing ElectronicsGuanyun Wang, Fang Qin, Haolin Liu, Ye Tao 等UbiComp 2021 · 被引用 51 次
- Rapid Iron-On User Interfaces: Hands-on Fabrication of Interactive Textile PrototypesKonstantin Klamka, Raimund Dachselt, Jürgen SteimleCHI 2020 · 被引用 50 次
相关 Paper
- CapContact: Super-resolution Contact Areas from Capacitive TouchscreensPaul Streli, Christian HolzCHI 2021 · 被引用 67 次
- TexYZ: Embroidering Enameled Wires for Three Degree-of-Freedom Mutual Capacitive SensingRoland Aigner, Andreas Pointner, Thomas Preindl, Rainer Danner 等CHI 2021 · 被引用 35 次
- Capacitivo: Contact-Based Object Recognition on Interactive Fabrics using Capacitive SensingTe-Yen Wu, Lu Tan, Yuji Zhang, Teddy Seyed 等UIST 2020 · 被引用 39 次
- Knitted Sensors: Designs and Novel Approaches for Real-Time, Real-World SensingDenisa Qori McDonald, Richard Vallett, Erin Solovey, Geneviève Dion 等UbiComp 2021 · 被引用 29 次
- What is Affective Touch Made Of? A Soft Capacitive Sensor Array Reveals the Interplay between Shear, Normal Stress and IndividualityDevyani McLaren, Jian Gao, Xiulun Yin, Rúbia Reis Guerra 等UIST 2024 · 被引用 10 次
