I. Dzafic∗
[1] E. Gamma, R. Helm, R. Johnson, & J. Vlissides, Design pat-terns – elements of reusable object-oriented software (Reading,MA: Addison Wesley, 2000). [2] B. Stroustrup, The C++ programming language, Third Edition(Reading, MA: Addison Wesley, 1995). [3] A.F. Neyer, F.W. Wu, & F. Imhof, Object-oriented program-ming for flexible software: Example of a load flow, IEEETransactions on Power Systems, 5 (3), August 1990, 689–696. [4] M. Foley, A. Bose, W. Mitchell, & A. Faustini, An object basedgraphical user interface for power systems, IEEE Transactionson Power Systems, 8 (1), February 1993, 97–104. [5] M. Foley & A. Bose, Object-oriented on-line network analysis,IEEE Transactions on Power Systems, 10 (1), February 1995,125–132. [6] J.R. Shin, W.H. Lee, & D.H. Im, A windows-based interactiveand graphic package for the education and training of powersystem analysis and operation, IEEE Transactions on PowerSystems, 14 (4), November 1999, 1193–1199. [7] E.Z. Zhou, Object-oriented programming, C++ and powersystem simulation, IEEE Transactions on Power Systems,11 (1), February 1996, 206–215. [8] Z.L. Gaing, N.L. Lu, B.S. Chang, & C.L. Cheng, An object-oriented approach for implementing power system restorationpackage, IEEE Transactions on Power Systems, 11 (1), Febru-ary 1996, 483–489. [9] R.B. Palma, L.D. Vargas, F.G. Flatow, & N.S. Oyarce, Ob-ject oriented platform for an integrated analysis of energyand transportation networks, IEEE Transactions on PowerSystems, 18 (3), August 2003, 1062–1069. [10] K.M. Nor, H. Mokhalis, & T.A. Gani, Reusability techniquesin load flow analysis computer program, IEEE Transactionson Power Systems, 19 (4), November 2004, 1754–1762. [11] F. Li & R.P. Broadwater, Software framework concepts forpower distribution system analysis, IEEE Transactions onPower Systems, 19 (2), May 2004, 948–956. [12] J. Zhu & D. Lubkeman, Object oriented development of soft-ware systems for power system simulations, IEEE Transactionson Power Systems, 12 (2), May 1997, 1002–1008. [13] J. Zhu & P. Jossman, Application of design patterns for objectoriented modeling of power systems, IEEE Transactions onPower Systems, 14 (2), May 1999, 532–537. [14] I. Dzafic, F.L. Alvarado, M. Glavic, & S. Tesnjak, Componentbased approach to power system applications development,Proc. 14th Power System Computation Conference, Sevilla,Spain, Paper 33-1, May 2002. [15] I. Dzafic, Symbolical-component approach to power systemsteady-state analysis, PhD Thesis, University of Zagreb, Croa-tia, July 2002. (In Croatian) [16] I. Dzafic, M. Glavic, & S. Tesnjak, A component-basedpower system model-driven architecture, IEEE Transactionson Power Systems, 19 (4), November 2004, 2109–2110. [17] I. Dzafic, PSSim – Windows based application for power systemsimulation and analysis, ver. 1.8, January 2005. Available athttp://www.simtel.net/product.php[url_fb_product_page]74914. [18] U. Breymann, Designing components with the C++ standardtemplate library (Addison Wesley Publishing Company, 1998). [19] C. Ashcraft & R. Grimes, SPOOLES: An object-orientedsparse matrix library, Proc. 1999 SIAM Conf. on ParallelProcessing for Scientific Computing, San Antonio, TX, USA,March 22–24, 1999. [20] Power System Test Case Archive, University of Washington,Seattle, USA. Available at http://www.ee.washington.edu/research/pstca. [21] V. Ajjarapu & C. Christy, The continuation power flow: A toolfor steady state voltage stability analysis, IEEE Transactionson Power Systems, 7, February 1992, 416–423. [22] M. Glavic, The continuation power flow: A tool for parametricvoltage stability and security analysis, Proc. of 59th AmericanPower Conference, Chicago, USA, April 1997, 1928–1934. [23] I. Dobson, C.L. DeMarco, F.L. Alvarado, M. Glavic, J. Zhang,R. Zimmerman, S. Greene, & R. Rajaraman, Electric powertransfer capability: Concepts, applications, sensitivity, uncer-tainty (Cornell University, USA: PSERC Publication 01–34,2001).77
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