Publication statistics

Pub. period:2010-2011
Pub. count:4
Number of co-authors:12



Co-authors

Number of publications with 3 favourite co-authors:

Yi-Ping Hung:4
Mike Y. Chen:3
Sung-Sheng Tsai:3

 

 

Productive colleagues

Neng-Hao Yu's 3 most productive colleagues in number of publications:

Yi-Ping Hung:20
Mike Y. Chen:14
Li-Wei Chan:12
 
 
 

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Neng-Hao Yu

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Publications by Neng-Hao Yu (bibliography)

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2011
 
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Yu, Neng-Hao, Chan, Li-Wei, Lau, Seng Yong, Tsai, Sung-Sheng, Hsiao, I-Chun, Tsai, Dian-Je, Hsiao, Fang-I, Cheng, Lung-Pan, Chen, Mike, Huang, Polly and Hung, Yi-Ping (2011): TUIC: enabling tangible interaction on capacitive multi-touch displays. In: Proceedings of ACM CHI 2011 Conference on Human Factors in Computing Systems 2011. pp. 2995-3004.

We present TUIC, a technology that enables tangible interaction on capacitive multi-touch devices, such as iPad, iPhone, and 3M's multi-touch displays, without requiring any hardware modifications. TUIC simulates finger touches on capacitive displays using passive materials and active modulation circuits embedded inside tangible objects, and can be used with multi-touch gestures simultaneously. TUIC consists of three approaches to sense and track objects: spatial, frequency, and hybrid (spatial plus frequency). The spatial approach, also known as 2D markers, uses geometric, multi-point touch patterns to encode object IDs. Spatial tags are straightforward to construct and are easily tracked when moved, but require sufficient spacing between the multiple touch points. The frequency approach uses modulation circuits to generate high-frequency touches to encode object IDs in the time domain. It requires fewer touch points and allows smaller tags to be built. The hybrid approach combines both spatial and frequency tags to construct small tags that can be reliably tracked when moved and rotated. We show three applications demonstrating the above approaches on iPads and 3M's multi-touch displays.

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Yu, Neng-Hao, Tsai, Sung-Sheng, Chen, Mike Y. and Hung, Yi-Ping (2011): TUIC open source SDK: enabling tangible interaction on unmodified capacitive multi-touch displays. In: Proceedings of the 2011 ACM International Conference on Interactive Tabletops and Surfaces 2011. p. D2.

 
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Yu, Neng-Hao, Tsai, Sung-Sheng, Hsiao, I-Chun, Tsai, Dian-Je, Lee, Meng-Han, Chen, Mike Y. and Hung, Yi-Ping (2011): Clip-on gadgets: expanding multi-touch interaction area with unpowered tactile controls. In: Proceedings of the 2011 ACM Symposium on User Interface Software and Technology 2011. pp. 367-372.

Virtual keyboards and controls, commonly used on mobile multi-touch devices, occlude content of interest and do not provide tactile feedback. Clip-on Gadgets solve these issues by extending the interaction area of multi-touch devices with physical controllers. Clip-on Gadgets use only conductive materials to map user input on the controllers to touch points on the edges of screens; therefore, they are battery-free, lightweight, and low-cost. In addition, they can be used in combination with multi-touch gestures. We present several hardware designs and a software toolkit, which enable users to simply attach Clip-on Gadgets to an edge of a device and start interacting with it.

© All rights reserved Yu et al. and/or ACM Press

2010
 
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Yu, Neng-Hao, Chan, Li-Wei, Cheng, Lung-Pan, Chen, Mike Y. and Hung, Yi-Ping (2010): Enabling tangible interaction on capacitive touch panels. In: Proceedings of the 2010 ACM Symposium on User Interface Software and Technology 2010. pp. 457-458.

We propose two approaches to sense tangible objects on capacitive touch screens, which are used in off-the-shelf multi-touch devices such as Apple iPad, iPhone, and 3M's multi-touch displays. We seek for the approaches that do not require modifications to the panels: spatial tag and frequency tag. Spatial tag is similar to fiducial tag used by tangible tabletop surface interaction, and uses multi-point, geometric patterns to encode object IDs. Frequency tag simulates high-frequency touches in the time domain to encode object IDs, using modulation circuits embedded inside tangible objects to simulate high-speed touches in varying frequency. We will show several demo applications. The first combines simultaneous tangible + touch input system. This explores how tangible inputs (e.g., pen, easer, etc.) and some simple gestures work together on capacitive touch panels.

© All rights reserved Yu et al. and/or their publisher

 
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Changes to this page (author)

05 Apr 2012: Modified
04 Apr 2012: Modified
05 Jul 2011: Modified
03 Nov 2010: Added

Page Information

Page maintainer: The Editorial Team
URL: http://www.interaction-design.org/references/authors/neng-hao_yu.html

Publication statistics

Pub. period:2010-2011
Pub. count:4
Number of co-authors:12



Co-authors

Number of publications with 3 favourite co-authors:

Yi-Ping Hung:4
Mike Y. Chen:3
Sung-Sheng Tsai:3

 

 

Productive colleagues

Neng-Hao Yu's 3 most productive colleagues in number of publications:

Yi-Ping Hung:20
Mike Y. Chen:14
Li-Wei Chan:12
 
 
 

Upcoming Courses

go to course
The Psychology of Online Sales: The Beginner's Guide
Starts tomorrow LAST CALL!
go to course
Human-computer Interaction
86% booked. Starts in 9 days
 
 

Featured chapter

Marc Hassenzahl explains the fascinating concept of User Experience and Experience Design. Commentaries by Don Norman, Eric Reiss, Mark Blythe, and Whitney Hess

User Experience and Experience Design !

 
 

Our Latest Books

 
 
The Social Design of Technical Systems: Building technologies for communities. 2nd Edition
by Brian Whitworth and Adnan Ahmad
start reading
 
 
 
 
Gamification at Work: Designing Engaging Business Software
by Janaki Mythily Kumar and Mario Herger
start reading
 
 
 
 
The Social Design of Technical Systems: Building technologies for communities
by Brian Whitworth and Adnan Ahmad
start reading
 
 
 
 
The Encyclopedia of Human-Computer Interaction, 2nd Ed.
by Mads Soegaard and Rikke Friis Dam
start reading