Title
A Hierarchical Consistency Model for Graphics Media in Flexible Collaboration-Transparent Systems
Abstract
At first, graphics media are abstracted into high level and low level representation. The high level representation includes the design history and feature description. The low level includes topology, geometry and attribution. Secondly, the consistency conditions for different abstracted levels are established. The consistency conditions can be described as strong consistency or weak consistency. They also can be described as strong no-consistency or weak no-consistency. Thirdly, according to layered consistency conditions, different abstracted levels of graphics media are associated with suitable concurrent control methods respectively, which can be strict or relaxed. Fourthly, the strategy how to apply hierarchical consistency model into flexible collaboration transparent infrastructure are analyzed. Finally, we applied the model and methods in our test-bed for collaborative design of engineering graphics.
Year
DOI
Venue
2007
10.1109/CSCWD.2007.4281432
CSCWD
Keywords
Field
DocType
cscw,high level representation,collaborative design,cad,consistency maintenance,collaboration-transparent,concurrency control,consistency conditions,low level representation,abstracted levels,graphics media,graphics design,concurrent control methods,hierarchical consistency model,engineering graphics,flexible collaboration-transparent systems,solid modelling,groupware,computer graphics,strong consistency,sun,application software,consistency model,graphic design,history,test bed,computer science,computed tomography,helium,weak consistency
Graphics,Sequential consistency,Computer-supported cooperative work,Concurrency control,Computer science,Collaborative software,Theoretical computer science,Weak consistency,Consistency model,Strong consistency,Distributed computing
Conference
ISBN
Citations 
PageRank 
1-4244-0963-2
0
0.34
References 
Authors
9
4
Name
Order
Citations
PageRank
Xiantao Cai113712.70
Fazhi He219816.93
Shaofen Wang300.34
Huajun Liu413911.42