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Table 1: Crossing results.
Utility
No Low Yes Very N.A.
Leader
25% 75%
Developer
8% 83% 9%
Usability
Very
Difficult
Difficult Usable Easy
Very
Easy
Leader
24% 63% 13%
Developer
58% 33% 9%
Effort register acceptance
0-3 4-6 7-9 10
Leader
24% 63% 13%
Developer
17% 83%
5 CONCLUSIONS
This work shows a task management approach and a
computational system to support software
development projects. Towards the efficiency in
metrics, Cronus establishes its architecture in
transforming project planning into activities which
makes the challenge of controlling and monitoring
tasks easier.
Cronus includes several task management tools
to improve the chances to effectively deliver
projects. By the use of this software, the expectation
is to save time and record effort automatically,
improve the deliverable quality, provide transparent
financial reports and track changes, risks and issues.
As previously mentioned the system acceptance
among its user reaches almost 90%. This good
perception is a result of Cronus’ usability and
credibility, once 95% experimental participants
believe in the usefulness of the system.
As future work, new reports will be developed
and the automation of effort recording will be
enhanced, so as to capture not only the period of
time, but also the tools used by developers to
perform the tasks.
ACKNOWLEDGEMENTS
This research was sponsored by Brazilian Defense
Ministry and Armed Forces; Brazilian Planning
Budgeting and Management Ministry; CAPES;
CNPq and COPPETEC Foundation.
REFERENCES
Boehm, B., 1996. Anchoring the software process, IEEE
Software, Vol.13, Issue 4, 73-82.
Casey, V., Richardson, I., 2006. Project Management
within Virtual Software Teams. IEEE International
Conference on Global Software Engineering
(ICGSE'06).
DeMarco, T., 1982. Controlling Software Projects:
Management Measurement and Estimation, Yourdon
Press.
Forsberg, K., et al, 2005. Visualizing Project
Management: Models and Frameworks for Mastering
Complex Systems. Hoboken, NJ: Wiley, 3rd ed.
Kelsey, R., 2006. Software Project Management:
Measures for Improving Performance. Vienna, VA:
Management Concepts.
Kerzner, H., 2003. Project Management: A Systems
Approach to Planning, Scheduling, and Controlling.
Wiley, 8th edition.
Goethert, W., Brad, C., 2000. Managing Software Projects
with Metrics, Software Engineering Institute, Carnegie
Mellon University, SEI Symposium Conference.
PMBOK, 2004. Project Management Body of Knowledge,
2004 Edition. Project Management Institute,
http://www.pmi.org, 2004.
Putnam, L., Myers, W., 2003. Five Core Metrics: The
Intelligence Behind Successful Software Management.
New York: Dorset House Publishing.
Riguzzi, F., 1996. A survey of software metrics. Technical
Report DEIS-LIA-96-010, LIA Series n.17, DEIS,
Università di Bologna.
Rodrigues et. al, 2009. A Research Model to Support the
Software Development Management for the Brazilian
Government. IADIS E-Society 2009, Barcelona.
Shenhar, A., et al, 2005. Toward a NASA-Specific Project
Management Framework. Engineering Management
Journal, December, 1. Disponível em
<http://www.allbusiness.com/engineering-management-
journal/20051201/3038574-1.html >
Soroczak, S., McDonald, D., 2006. Collaborating Over
Project Schedules. in Workshop on Supporting the
Social Side of Large-Scale Software Development.
ACM Conference on Computer Supported
Cooperative Work (CSCW'06).
Standish Group, 2004. Chaos Report, Standish Group,
Disponível em <http://www.standishgroup.com>
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