시간-비용 최적관계 분석용 정확해 추정기법

논문상세정보
' 시간-비용 최적관계 분석용 정확해 추정기법' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • activity overlapping
  • exactsolution
  • optimization
  • rework cost-slope
  • time-cost tradeoff
  • 액티비티 중첩
  • 일정-비용 최적관계 분석
  • 재작업 비용구배
  • 정확해
  • 최적화
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
1,454 0

0.0%

' 시간-비용 최적관계 분석용 정확해 추정기법' 의 참고문헌

  • Time-cost tradeoffs in overlapped product development
    Roemer, T. A. Operation Research 48 (6) : 858 ~ 865 [2000]
  • The historical roots of concurrent engineering fundamentals
    Smith, R. P. IEEE Transactions on Engineering Management 44 (1) : 67 ~ 78 [1997]
  • Synthesis of a model for life-cycle project management
    Jaafari, A. Computer-Aided Civil and Infrastructure Engineering 15 : 26 ~ 38 [2000]
  • Scheduling/cost optimization and neural dynamics model for construction
    Adeli, H. Journal of Construction Management and Engineering 123 (4) : 450 ~ 458 [1997]
  • Resource scheduling using neural dynamics model of Adeli and Park
    Senouci, A. B. & Adeli, H. Journal of Construction Engineering and Management 127 (1) : 28 ~ 34 [2001]
  • Reliability-based optimization models for scheduling pavement rehabilitation
    Deshpande, V. P. Computer-Aided Civil and Infrastructure Engineering 25 (4) : 227 ~ 237 [2010]
  • Regularization neural network for construction cost estimation
    Adeli, H. Journal of Construction Engineering and Management 124 (1) : 18 ~ 24 [1998]
  • Neuro-fuzzy cost estimation model enhanced by fast messy genetic algorithms for semiconductor hookup construction
    Hsiao, F. Y. Computer-Aided Civil and Infrastructure Engineering 27 (10) : 764 ~ 781 [2012]
  • Multimode project scheduling based on particle swarm optimization
    Zhang, H. Computer-Aided Civil and Infrastructure Engineering 21 (2) : 93 ~ 103 [2006]
  • MOST-FIT: support techniques for inspection and life cycle optimization in building asset management
    Hegazy, T. Computer-Aided Civil and Infrastructure Engineering 27 (2) : 130 ~ 142 [2012]
  • Keynote lecture: concurrent engineering in the construction industry
    Adeli, H. Proceedings of the 7th ISPE International Conference on Concurrent Engineering : 578 ~ 585 [2000]
  • Integrating messy genetic algorithms and simulation to optimize resource utilization
    Cheng, T.-M. Computer-Aided Civil and Infrastructure Engineering 24 (6) : 401 ~ 415 [2009]
  • Incorporating rework into construction schedule analysis
    Hegazy, T. Automation in Construction 20 : 1051 ~ 1059 [2011]
  • Developing crew allocation system for the precast industry using genetic algorithms
    Al-Bazi, A. Computer-Aided Civil and Infrastructure Engineering 25 (8) : 581 ~ 595 [2010]
  • Concurrent engineering approach to reducing design delivery time
    Bogus, S. M. Journal of Construction Engineering and Management 131 (11) : 1179 ~ 1185 [2005]
  • Concurrent construction and life cycle project management
    Jaafari, A. Journal of Construction Engineering and Management 123 (4) : 427 ~ 436 [1997]
  • Computer-Based Construction Project Management
    Hegagy, T. Prentice-Hall, Inc. [2002]
  • CONSCOM: an OO construction scheduling and change management system
    Karim, A. Journal of Construction Engineering and Management 125 (5) : 368 ~ 376 [1999]
  • An intelligent risk assessment system for distributed construction teams
    Shang, H. Engineering Construction and Architectural Management 12 (4) : 391 ~ 404 [2005]
  • A model-based framework to overlap product development activities
    Krishnan, V. Management Science 43 (4) : 437 ~ 445 [1997]
  • A methodology for scheduling overlapped design activities based on dependency information
    Srour, I. M. Automation in Construction 29 : 1 ~ 11 [2013]