Enhancing Intellectual Property Information System Quality with RAD and FMCDM

Abstract

In the development of intellectual property information systems, the Rapid Application Development (RAD) method and Fuzzy Multi-Criteria Decision Making (FMCDM) were often used to enhance the quality and effectiveness of system development. This research aimed to analyze the effectiveness of implementing the RAD and FMCDM methods in the development of intellectual property information systems at Poliban. The study employed a qualitative approach through a case study of the development of intellectual property information systems at Poliban. The RAD and FMCDM methods were applied in the development of intellectual property information systems during the user design stages, followed by an analysis of the quality and effectiveness of system development. The research results indicated that the application of the RAD and FMCDM methods in the development of intellectual property information systems at Poliban was effective and could improve the quality of system development. Using the RAD method, system development could be executed quickly and efficiently, while the FMCDM method allowed for more accurate and precise decision-making during system development. The combination of the RAD and FMCDM methods led to the creation of a better and more effective intellectual property information system.


Keywords: fuzzy multi-criteria decision making, information system, intellectual property, rapid application development

References
[1] Albers S, Koirala B, Sarker S. “Intellectual Property Management: A Review of Literature.,” In: Proceedings of the 20th Pacific Asia Conference on Information Systems (PACIS). pp. 1–14., Langkawi, Malaysia.

[2] S. Ali and H. Tang, “Is Intellectual Property Beneficial to Knowledge Management? Literature Review on Organizational Knowledge Protection.,” Journal of the Knowledge Economy. vol. 14, no. 4, p. 2023. https://doi.org/10.1007/s13132-022- 00904-3.

[3] Holgersson M, Aaboen L. “A literature review of intellectual property management in technology transfer offices: From appropriation to utilization.,” Technology in Society. vol. 59, p. 2019.

[4] G.W. Sasmito, D.S. Wibowo, and D. Dairoh, “Implementation of Rapid Application Development Method in the Development of Geographic Information Systems of Industrial Centers.,” Journal of Information and Communication Convergence Engineering. vol. 18, no. 3, p. 2020.

[5] Pratomo A, Irawan A. M.R.-J. of P. Conference, and undefined 2020, “Similarity detection design using Winnowing Algorithm as an effort to apply green computing.,” iopscience.iop.org. vol. 1450, p. 12065, 2020.

[6] A. Setiawan and E. Yulianto, “Implementation of risk control self assessments using rapid application development model in bank operational risk management process.,” Journal of Theoretical and Applied Information Technology. vol. 97, no. 11, p. 2019.

[7] S.L.L. and S.M. Chen. The development of a decision support system for selecting the appropriate software development methodology. Appl Soft Comput. 2013;13(1):291– 300.

[8] Agarwal R, Prasad J, Tanniru M, Lynch J. “Risks of Rapid Application Development.,” Communications of the ACM. vol. 43, p. 2000. https://doi.org/10.1145/352515.352516.

[9] Chen SJ, Chen SM, Huang CH. Fuzzy multi-criteria decision-making for evaluating the performance of financial holding companies in Taiwan. Expert Syst Appl. 2006;31(4):803–13.

[10] J. Tamošaitienė, H. Sarvari, M. Cristofaro, and D.W.M. Chan, “Identifying and prioritizing the selection criteria of appropriate repair and maintenance methods for commercial buildings.,” International Journal of Strategic Property Management. vol. 25, no. 5, p. 2021.

[11] J. Martin, Rapid application development., 1991.

[12] 12. Aldosari MA. A Study of the Rapid Application Development (RAD) Methodology. International Journal of Computer Science and Network Security. 2016;16(6):21–4.

[13] “Rapid Application Development (RAD) | Definition, Steps & Full Guide,” https://kissflow.com/application-development/rad/rapid-application-development/

[14] Eva M. “Requirements acquisition for rapid applications development.,” Information and Management. vol. 39, no. 2, p. 2001. https://doi.org/10.1016/S0378- 7206(01)00082-9.

[15] Gupta A, Poels G, Bera P. “Using Conceptual Models in Agile Software Development: A Possible Solution to Requirements Engineering Challenges in Agile Projects.,” IEEE Access. vol. 10, p. 2022.

[16] Dennis A, Wixom BH, Tegarden D. System Analysis and Design: An object-oriented approach with UML, 5th ed., 2015.

[17] D.A. Abdulmonim, Z.H. Muhamad, and B. Alathari, “Using the object mapping approach from analysis to implementation for developing student registration system.,” Indonesian Journal of Electrical Engineering and Computer Science. vol. 14, no. 2, p. 2019. https://doi.org/10.11591/ijeecs.v14.i2.pp1030-1038.

[18] R. Vijay Anand and M. Dinakaran, “Popular agile methods in software development: Review and analysis.,” International Journal of Applied Engineering Research. vol. 11, no. 5, p. 2016.

[19] Nurhaida I, Ayumi V, Noprisson H, Ratnasari A, Utami M, Putra ED. “Web Development Using WISDM and RAD.,” In: 2020 International Conference on Information Technology Systems and Innovation, ICITSI 2020 - Proceedings (2020).

[20] L.Z.-I. and control and undefined 1965, “Fuzzy sets.,” Elsevier. p.

[21] Kahraman C, Onar SC, Oztaysi B. Fuzzy Multicriteria Decision-Making: A Literature Review. International Journal of Computational Intelligence Systems. 2015;8(4):637– 66.

[22] Azhar NA, Radzi NA, Wan Ahmad WS. “Multi-criteria Decision Making: A Systematic Review.,” (Recent Advances in Electrical & Electronic Engineering (Formerly Recent Patents on Electrical & Electronic Engineering). vol. 14, no. 8, p. 2021.

[23] Sasongko IH, Wulansari H, Supriyati T. “The Integration of Rapid Application Development (RAD) and Fuzzy Multiple Criteria Decision Making (FMCDM) in Developing Health Information System.,” In: IOP Conference Series: Materials Science and Engineering (2017).

[24] İ. Kaya, M. Çolak, and F. Terzi, “A comprehensive review of fuzzy multi criteria decision making methodologies for energy policy making,” (2019). https://doi.org/10.1016/j.esr.2019.03.003.

[25] D.D. Utomo, K. Mutijarsa, and R. Fathoni, “Fuzzy Decision Making in Rapid Application Development for E-Learning System.,” International Journal of Emerging Technologies in Learning. p. 2021.

[26] Mokoena KP, Dlodlo T. “Fuzzy Multi-Criteria Decision-Making (FMCDM) Approach for Software Development Methodology Selection: A Case of Small and Medium Enterprises.,” Information Technology Journal. p. 2019.

[27] K. Kendall, J. Kendall, K. Kendall, and J. Kendall, Systems analysis and design., 2002.

[28] Hanine M, Boutkhoum O, Tikniouine A, Agouti T. “A new web-based framework development for fuzzy multi-criteria group decision-making.,” SpringerPlus. vol. 5, no. 1, p. 2016. https://doi.org/10.1186/s40064-016-2198-1.

[29] G. Büyüközkan and M. Güler, “A combined hesitant fuzzy MCDM approach for supply chain analytics tool evaluation.,” Applied Soft Computing. vol. 112, p. 2021.

[30] Y. Liu, C.M. Eckert, and C. Earl, “A review of fuzzy AHP methods for decision-making with subjective judgements,” (2020). https://doi.org/10.1016/j.eswa.2020.113738.