Florida Atlantic University
Empirical Software Engineering Laboratory


2000 Publications

For further information, contact Prof. Taghi M. Khoshgoftaar, Dept. of Computer Science and Engineering, Florida Atlantic University, Boca Raton, FL 33432, phone: (561)297-3994, fax: (561)297-2800, email: taghi@cse.fau.edu.

[1]Yevgeniy Berkovich. Software quality prediction using case-based reasoning. Master's thesis, Florida Atlantic University, Boca Raton, Florida USA, August 2000. Advised by Taghi M. Khoshgoftaar.

[2]Ye Chen. Measurement of coupling and cohesion of software. Master's thesis, Florida Atlantic University, Boca Raton, Florida USA, May 2000. Advised by Taghi M. Khoshgoftaar.

[3]Xin Guan. Cost of misclassification in software quality models. Master's thesis, Florida Atlantic University, Boca Raton, Florida USA, May 2000. Advised by Taghi M. Khoshgoftaar.

[4]Wendell D. Jones, John P. Hudepohl, Taghi M. Khoshgoftaar, and Edward B. Allen. Application of a usage profile in software quality models. Science of Computer Programming, 2000. In press.

[5]Taghi M. Khoshgoftaar and Edward B. Allen. Balancing misclassification rates in classification-tree models of software quality. Empirical Software Engineering: An International Journal, 5, 2000. In press.

[6]Taghi M. Khoshgoftaar and Edward B. Allen. Empirical assessment of a software metric: The information content of operators. Software Quality Journal, 2000. In press.

[7]Taghi M. Khoshgoftaar and Edward B. Allen. Modeling the risk of software faults. In Conference Proceedings: International Software Assurance Certification Conference, Reston, Virginia USA, September 2000. Information Technology Association of America. Proceedings available from Reliable Software Technologies, Sterling, VA USA. In press.

[8]Taghi M. Khoshgoftaar and Edward B. Allen. A practical classification rule for software quality models. IEEE Transactions on Reliability, 49(2), June 2000. In press.

[9]Taghi M. Khoshgoftaar and Edward B. Allen. Predicting fault-prone software modules in embedded systems with classification trees. International Journal of Reliability, Quality and Safety Engineering, 7(4), December 2000. In press.

[10]Taghi M. Khoshgoftaar, Edward B. Allen, Wendell D. Jones, and John P. Hudepohl. Accuracy of software quality models over multiple releases. Annals of Software Engineering, 6, 2000. In press.

[11]Taghi M. Khoshgoftaar, Edward B. Allen, Wendell D. Jones, and John P. Hudepohl. Classification tree models of software quality over multiple releases. IEEE Transactions on Reliability, 49(1), March 2000. In press.

[12]Taghi M. Khoshgoftaar, Edward B. Allen, and Ruqun Shan. Benefits of principal components analysis with classification trees of fault-prone software modules. In Hoang Pham and Ming-Wei Lu, editors, Proceedings: Sixth ISSAT International Conference on Reliability and Quality in Design, Orlando, Florida USA, August 2000. International Society of Science and Applied Technologies. Invited paper. In press.

[13]Taghi M. Khoshgoftaar, Edward B. Allen, and Ruqun Shan. Improving tree-based models of software quality with principal components analysis. In Proceedings: Eleventh International Symposium on Software Reliability Engineering, San Jose, California USA, October 2000. IEEE Computer Society. In press.

[14]Taghi M. Khoshgoftaar, Edward B. Allen, and Vishal Thaker. Modeling fault-prone modules of subsystems. In Proceedings: Eleventh International Symposium on Software Reliability Engineering, San Jose, California USA, October 2000. IEEE Computer Society. In press.

[15]Taghi M. Khoshgoftaar, Edward B. Allen, and Zhiwei Xu. Predicting testability of program modules using a neural network. In Proceedings: Symposium on Application-Specific Systems and Software Engineering Technology, Richardson, Texas USA, March 2000. IEEE Computer Society. In press.

[16]Taghi M. Khoshgoftaar, Ruqun Shan, and Edward B. Allen. Using product, process, and execution metrics to predict fault-prone software modules with classification trees. In Proceedings: Fifth IEEE International Symposium on High-Assurance Systems Engineering, Albuquerque, New Mexico USA, November 2000. IEEE Computer Society. In press.

[17]Wenlei Mao. Classification of software quality using tree modeling with the SPRINT/SLIQ algorithm. Master's thesis, Florida Atlantic University, Boca Raton, Florida USA, May 2000. Advised by Taghi M. Khoshgoftaar.

[18]Robert M. Szabo and Taghi M. Khoshgoftaar. Classifying software modules into three risk groups. In Hoang Pham and Ming-Wei Lu, editors, Proceedings: Sixth ISSAT International Conference on Reliability and Quality in Design, Orlando, Florida USA, August 1999. International Society of Science and Applied Technologies. Invited paper. In press.

[19]Vishal Thaker. Modeling fault-prone modules of subsystems. Master's thesis, Florida Atlantic University, Boca Raton, Florida USA, August 2000. Advised by Taghi M. Khoshgoftaar.

[20]Zhiwei Xu, Taghi M. Khoshgoftaar, and Edward B. Allen. Application of fuzzy linear regression model for predicting program faults. In Hoang Pham and Ming-Wei Lu, editors, Proceedings: Sixth ISSAT International Conference on Reliability and Quality in Design, Orlando, Florida USA, August 2000. International Society of Science and Applied Technologies. Invited paper. In press.

[21]Zhiwei Xu, Taghi M. Khoshgoftaar, and Edward B. Allen. Prediction of software faults using fuzzy nonlinear regression modeling. In Proceedings: Fifth IEEE International Symposium on High-Assurance Systems Engineering, Albuquerque, New Mexico USA, November 2000. IEEE Computer Society. In press.

[22]Xiaohong Yuan, Taghi M. Khoshgoftaar, Edward B. Allen, and K. Ganesan. An application of fuzzy clustering to software quality prediction. In Proceedings: Symposium on Application-Specific Systems and Software Engineering Technology, Richardson, Texas USA, March 2000. IEEE Computer Society. In press.


URL: http://www.cse.fau.edu/research/ESEL/esel00.htm