DocumentCode
2508471
Title
Distributed collaborative environments for systems engineering
Author
McQuay, William K.
Author_Institution
Inf. Directorate, Air Force Res. Lab., Dayton, OH, USA
Volume
2
fYear
2004
fDate
24-28 Oct. 2004
Abstract
Distributed collaboration is an emerging technology for the 21st century that significantly changes the way business is conducted in the defense and commercial sectors. Collaboration involves two or more geographically dispersed individuals working together to create a "product" by sharing and exchanging data, information and knowledge. A product is defined broadly to include, for example, writing a report, creating a software, designing hardware, or implementing robust systems engineering processes in an organization. Collaborative environments provide the framework and integrate models, simulations, domain specific tools, and virtual test beds to facilitate collaboration between the multiple disciplines needed in the enterprise. The Air Force Research Laboratory (AFRL) is conducting a leading edge program in developing distributed collaborative technologies targeted to the Air Force\´s implementation of systems engineering for simulation-aided acquisition and test process and capability-based planning. The research is focuses on the open systems agent-based framework, product and process modeling, structural architecture, and the integration technologies - the glue to integrate the software components. In the past four years, two live assessment events have been conducted to demonstrate the technology in support of air force agile acquisition that included capabilities for system engineering. The AFRL collaborative environment concept fosters a major cultural change in how the acquisition, training, and operational communities conduct business.
Keywords
aerospace computing; groupware; open systems; systems engineering; Air Force Research Laboratory; air force agile acquisition; capability based planning; data exchange; distributed collaborative environments; distributed collaborative technology; information exchange; knowledge exchange; open systems agent based framework; process modeling; product modeling; simulation aided acquisition; software components; structural architecture; systems engineering; Business; Collaboration; Collaborative tools; Collaborative work; Hardware; Modeling; Robustness; Software design; Systems engineering and theory; Writing;
fLanguage
English
Publisher
ieee
Conference_Titel
Digital Avionics Systems Conference, 2004. DASC 04. The 23rd
Print_ISBN
0-7803-8539-X
Type
conf
DOI
10.1109/DASC.2004.1390791
Filename
1390791
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