Title
Efficient integrated collaborative production of high-end audio-visual content
Abstract
In recent years the world has witnessed an unprecedented expansion in the global audio-visual industry and actions have been initiated to strengthen its actors, especially in film-making and video production. Companies seeking ways to improve their performance and productivity and become more competitive are investing in modern digital technologies. Very powerful high-performance computing systems are found today even in small production facilities. Yet, little effort has been used to implement activities other than production/post-production and even less, to integrate the whole cycle of content development and creation within a networked collaborative environment. This paper reports the experience of the DAViD project, aiming to establish ways to interact and collaborate during pre-production phases. Several benefits have been demonstrated such as reduction of the overall production time and cost, increased productivity and increased ability to execute complex, multi-company productions in shorter times and lower budgets
Year
DOI
Venue
1999
10.1109/ISCC.1999.780835
ISCC
Keywords
Field
DocType
multimedia computing,high-end audio-visual content,david project,efficient integrated collaborative production,lower budget,content development,small production facility,high-performance computing,overall production time,cinematography,film making,multi-company production,video production,content creation,integrated collaborative production,increased ability,global audio-visual industry,pre-production,groupware,increased productivity,productivity,computer networks,collaboration,distributed computing,high performance computing,production systems
Video production,Telecommunications,Content development,Computer science,Collaborative software,Multimedia,Computing systems
Conference
ISSN
ISBN
Citations 
1530-1346
0-7695-0250-4
1
PageRank 
References 
Authors
0.41
1
3
Name
Order
Citations
PageRank
Karidis, A.110.41
Apostolos Meliones26216.35
Stassinopoulos, G.330.84