Systematic Embedded Subsystem Development Methodology for POP System

POP 시스템 개발에 있어서의 체계적인 임베디드 서브시스템 개발방법론

  • Jo, Young-Hyo (SI Department of Probot co. ltd.) ;
  • Han, Kwan-Hee (Department of Industrial and Systems Engineering, Engineering Research Institute Gyeongsang National University) ;
  • Choi, Sang-Hyun (Department of Industrial and Systems Engineering, Engineering Research Institute Gyeongsang National University)
  • 조영효 ((주)프로봇 SI 사업부) ;
  • 한관희 (경상대학교 산업시스템공학부.공학연구원) ;
  • 최상현 (경상대학교 산업시스템공학부.공학연구원)
  • Received : 2009.09.23
  • Accepted : 2009.12.31
  • Published : 2010.03.01

Abstract

This paper presents a structured framework for developing the embedded subsystem, called ESDMP (Embedded Subsystem Development Methodology for POP), which is one of core components at the development of POP (Point Of Production) system. It is essential that embedded subsystem development methodology must be closely related to the general information system development methodology from the early stage of system development. Therefore, this paper investigates the PDSM (Production System Development Methodology) that is developed by Korea Technology and Information Promotion Agency for SMEs and widely utilized at the fields of POP system development, and proposes the embedded subsystem development methodology aligned with each step of PSDM. The main characteristics of proposed methodology are as follows : First, it is developed to link each step of embedded subsystem development with relating steps of PSDM from the early stage of feasibility study. Second, it provides the procedure for designing and implementing hardware and software simultaneously. Third, it includes the method of reusability for developed products and modules.

Keywords

References

  1. Hammer, M. and Champy, J. (1993), Reengineering the Corporation:a Manifesto for Business Revolution, Harper Business, New York.
  2. Jeong, K. H., Chae, H. Y., Kim, J. K., Lee, J. S., and Kang, S. J. (2004), Embedded Real-Time System Software Development Methodology Applying Physical Prototyping Method, Journal of IEEK, 31(11), 1386-1397.
  3. Jozwiak, L. Nedjah, N., and Figueroa, M. (2009), Modern development methods and tools for embedded reconfigurable systems:A survey, Integration, the VLSI Journal, In Press, www.elsevier.com/locate/vlsi.
  4. Kang, K. C., Lee, J. J., Kim, B. K., and Kim, S. J. (2004), Software Product Line Engineering for Productivity Improvement in Embedded Systems Development, Journal of KIISE, 22(6), 25-35.
  5. Kim, J. H., Sim, J. H., and Choi, J. Y. (2008), Resource-Oriented Design Framework for Embedded System Components, Electronic Notes in Theoretical Computer Science, 215, 171-189. https://doi.org/10.1016/j.entcs.2008.06.027
  6. Korea Technology and Information Promotion Agency for SMEs (2009), Production System Development Methodology (PSDM).
  7. Lee, S. Y., Kim, J. H., and Choi, J. Y. (2006), Hardware/Software Co-Design and Verification by Synchronous Language for Embedded System, Proceedings of 2006 Korea Information Science Society Fall Conference, 33(2), 469-474.
  8. Park, C. S. (2006), Construction of the Framework for Developing Embedded System, Electronics and Telecommunication Research Institute.
  9. Seol, J. H. (2006), A Study on Efficiency of Embedded Software Development Method Based on Formal Language, Master Thesis, Department of Computer Science, Gyeongsang National University.
  10. Yang, Y. J., Jo, J. H., Ha S. J., and Cha, S. J. (2006), Development Methodology and Reuse Supporting System for Embedded System, Electronics and Telecommunication Trend Analysis, 21(1), 82-93.