DOI QR코드

DOI QR Code

표준품셈 제.개정 지원용 클라이언트/서버 사이클론 시스템

Client/Server based CYCLONE System for Revising Construction Standard Production Unit System (C/S CYCLONE)

  • 손창백 (세명대학교 건축공학과) ;
  • 임태경 (경북대학교 건축.토목공학부 대학원) ;
  • 이동은 (경북대학교 건축.토목공학부)
  • 발행 : 2013.01.25

초록

This study introduces a Client/Server based CYCLONE (C/S CYCLONE) that enables to support the revision of construction standard production unit (CSPU) effectively. Construction processes are highly repetitive. A resource entity continuously cycles through work tasks that processes or uses resources. Web-CYCLONE (Halpin 1992) has been accepted as a useful tool for modeling a construction operation and analyzing the productivity of it. However, the system has a lack of practicality as follows: (1) it does not efficiently record and keep track of operation models in a database; (2) it does not allow users to retrieve a model for reuse and update the model with local conditions; finally (3) extending it into a practical domain is rare. In order to overcome the aforementioned limitations of the simulation system in the view of practitioners, this paper presents three strategies to converting the existing CYCLONE system to be suitable for an CSPU's revision process and provides system user interfaces corresponding to the strategies. The usability of the developed C/S CYCLONE was verified by using a case study on jobsite steel erection operation.

키워드

참고문헌

  1. 손창백, 이동은, "표준품셈 제 개정 효율화를 위한 작업일보개선방안", 대한건축학회논문집, 28(5), 135-142, 2012.
  2. 손창백, 홍성호, 김화중, "건설공사 표준품셈 조사체계의 개선방안", 대한건축학회논문집, 26(6), 157-166, 2010.
  3. AbouRizk et al., "State-of-the-art in construction simulation", Proceedings of the 1992 Winter Simulation Conference, ASCE, Arlington, 1271-1277, 1992.
  4. Halpin, D. W., "CYCLONE-A method for modeling job site processes." J .Constr.Div.,ASCE, 103(3), 489-499, 1977.
  5. Ioannou, P. G., UM-CYCLONE user's guide, Dept. of Civ. Engrg., University of Michigan, Ann Arbor, Mich, 1989.
  6. Tommelein, I. D., Carr, R. I., and Odeh, A. M., "Knowledge based assembly of simulation networks using construction designs, plans, and methods." Proc., 1994 Winter Simulation Conf., IEEE Computer Society, Washington, D.C., 1145-1152, 1994.
  7. Martinez, J. C. STROBOSCOPE state and resource based simulation of construction processes, Ph.D. thesis, Dept. of Civil Engineering, Univ. of Michigan, Ann Arbor, Mich, 1996.
  8. AbouRizk, S. M., and Mohamed, Y. "SIMPHONY-An integrated environment for construction simulation" Proc. 2000 Winter Simulation Conf., Society for Computer Simulation International, SanDiego, 1907-1914, 2000.
  9. Touran, A. "Simulation of tunnel operation." J. Constr. Engrg. and Mgmt., ASCE, 113(4), 554-568, 1987. https://doi.org/10.1061/(ASCE)0733-9364(1987)113:4(554)
  10. Smith, S. D., Obsorne, J. R., and Forde, M. C. "Analysis of earthmoving systems using discrete-event simulation", J. Constr. Engrg. and Mgmt., ASCE, 121(4), 388-396, 1995. https://doi.org/10.1061/(ASCE)0733-9364(1995)121:4(388)
  11. Huang, R., Grigoriadis, A. M., and Halpin, D. W., "Simulation of cable-stayed bridges using DISCO", Proc., 1994 Winter Simulation Conf., IEEE, Piscataway, N.J., 1130-1136, 1994.
  12. Halpin, D.W., and Riggs, L.S. Planning and analysis of construction operations, John Wiley & Son, Inc, New York, 1992.
  13. McCahill, D.F., and Bernold, L.E. "Resource-oriented modeling and simulation in construction" J. Constr. Engrg. and Mgmt., ASCE, 119(3) , 590-606, 1993. https://doi.org/10.1061/(ASCE)0733-9364(1993)119:3(590)
  14. Shi, J. J. "Activity-based construction (ABC) modeling and simulation method." J. Constr. Engrg. and Mgmt., ASCE, 125(5), 354-360, 1999. https://doi.org/10.1061/(ASCE)0733-9364(1999)125:5(354)
  15. Liu, L.Y., and Ioannou, P.G. "Graphical object-oriented discrete-event simulation system", Proceedings of the 1992 Winter Simulation Conference, Arlington, Va., December, 1285-1291, 1992.