TY - GEN
T1 - An integrated software management tool for adopting software product lines
AU - Park, Kibum
AU - Ryu, Duksan
AU - Baik, Jongmoon
PY - 2012
Y1 - 2012
N2 - Software product line engineering has become widely known that it provides software organization with tremendous profits through systematical reuse to a number of organizations that require producing various and similar kinds of software products. However, when adopting software product lines, it has been reported that there are several challenges, e.g., the shortage of procedural support for application engineering, and original reasons of complexity and implicit properties for variability management. In order to address these major problems, an integrated tool support is required to guide software product line engineering process. The integrated software management tool for adopting software product lines, called "ISMT4SPL" can offer beneficial traceability among the artifacts created from domain engineering and application engineering. Furthermore, all the artifacts could consistently be managed by explicit representation of the relationship between artifacts generated at each software development phase by ISMTSPL. ISMT4SPL would contribute to adopting and guiding software product lines into the organizations that demand the seamless introduction of systematic reuse since the ISMT4SPL is helpful to manage variability by delivering the method that can generate a flexible and automatic variability model, which reduces complexity for managing a number of variation points and variants. In addition, consistency between all the artifacts would reduce confusion and quality problems by removing mismatches among them.
AB - Software product line engineering has become widely known that it provides software organization with tremendous profits through systematical reuse to a number of organizations that require producing various and similar kinds of software products. However, when adopting software product lines, it has been reported that there are several challenges, e.g., the shortage of procedural support for application engineering, and original reasons of complexity and implicit properties for variability management. In order to address these major problems, an integrated tool support is required to guide software product line engineering process. The integrated software management tool for adopting software product lines, called "ISMT4SPL" can offer beneficial traceability among the artifacts created from domain engineering and application engineering. Furthermore, all the artifacts could consistently be managed by explicit representation of the relationship between artifacts generated at each software development phase by ISMTSPL. ISMT4SPL would contribute to adopting and guiding software product lines into the organizations that demand the seamless introduction of systematic reuse since the ISMT4SPL is helpful to manage variability by delivering the method that can generate a flexible and automatic variability model, which reduces complexity for managing a number of variation points and variants. In addition, consistency between all the artifacts would reduce confusion and quality problems by removing mismatches among them.
KW - Integrated software management tool
KW - Software process
KW - Software product line engineering
KW - Traceability
KW - Variability
UR - https://www.scopus.com/pages/publications/84864038720
U2 - 10.1109/ICIS.2012.33
DO - 10.1109/ICIS.2012.33
M3 - Conference paper
AN - SCOPUS:84864038720
SN - 9780769546940
T3 - Proceedings - 2012 IEEE/ACIS 11th International Conference on Computer and Information Science, ICIS 2012
SP - 553
EP - 558
BT - Proceedings - 2012 IEEE/ACIS 11th International Conference on Computer and Information Science, ICIS 2012
PB - IEEE Computer Society
T2 - 11th IEEE/ACIS International Conference on Computer and Information Science, ICIS 2012
Y2 - 30 May 2012 through 1 June 2012
ER -