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ABSTRACT
Tangible interfaces are best viewed as an interacting collection of remotely-located distributed hardware and software components. The problem is that current physical user interface toolkits do not normally offer distributed systems capabilities, leaving developers with extra burdens such as device discovery and management, low-level hardware access, and networking. Our solution is Shared Phidgets, a toolkit for rapidly prototyping distributed physical interfaces. It offers programmers 3 ways to access and control remotely-located hardware, and the ability to create abstract devices by transforming, aggregating and even simulating device capabilities. Network communication and low-level access to device hardware are handled transparently, regardless of device location.
REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
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INDEX TERMS
Primary Classification:
H.
Information Systems
H.5
INFORMATION INTERFACES AND PRESENTATION (I.7)
H.5.2
User Interfaces (D.2.2, H.1.2, I.3.6)
Subjects:
Input devices and strategies (e.g., mouse, touchscreen)
Additional Classification:
H.
Information Systems
H.5
INFORMATION INTERFACES AND PRESENTATION (I.7)
H.5.2
User Interfaces (D.2.2, H.1.2, I.3.6)
Subjects:
User-centered design;
Prototyping;
Interaction styles (e.g., commands, menus, forms, direct manipulation)
General Terms:
Design
Keywords:
distributed physical user interfaces,
phidgets
REVIEW
"Xavier Ferre : Reviewer"
Shared phidgets represent a step ahead in the phidgets or physical widgets concept. Phidgets allow hardware elements to be dealt with in a simple way, just as graphical user interface widgets are dealt with. In addition, shared phidgets offer the
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