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목차

모듈러 건축의 타워크레인 배치계획 수립을 위한 다중 최적화 모델 개발 = Multi-objective optimization model for tower crane layout planning in modular construction / 윤성부 ; 박문서 ; 정민혁 ; 현호상 ; 안수호 1

Abstract 1

1. 서론 1

1.1. 연구의 배경 및 목적 1

1.2. 연구의 범위 및 방법 2

2. 문헌고찰 2

2.1. TCLP 관련 선행연구 2

2.2. 유전 알고리즘 3

3. 모듈러 건축 TCLP 모델 3

3.1. 모델 프로세스 3

3.2. 부지 그리드화 3

3.3. T/C 제원 및 위치 최적화 3

3.4. 최적해 비교 및 TCLP 수립 6

4. Case Study 7

4.1. Case Study 환경 설정 7

4.2. 최적화 수행 7

4.3. 결과 분석 8

5. 결론 9

Notation 9

References 10

요약 11

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
블록체인기술을 활용한 토목공사 생애주기 BIM 모델의 신뢰성 확보 방안 = Application of blockchain technology to verify reliability of life cycle BIM model for civil engineering project 이재희, 문현석, 강인석 p. 116-124

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공정의 선후행관계를 이용한 공종 이미지 분류 성능 향상 = Enhancing work trade image classification performance using a work dependency graph 정상원, 정기창 p. 106-115

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OSC기반 PC구조 공동주택의 보급 및 활성화 방안과 핵심 성과 지표 개발 : A study on plans for diffusion & revitalization, and developing key performance indicator for OSC based PC structure apartment housing / 주체별 설문조사 분석결과를 중심으로 이성호, 차희성 p. 98-105

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실물옵션을 활용한 새만금 수상태양광 투자사업의 수익성 분석 = Real options analysis for the investment of floating photovoltaic project in Saemangeum 김경석 p. 90-97

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3D 프린팅 기술을 활용한 PLA 필라멘트 비탈형 거푸집 연구 = Permanent formwork of PLA filament utilizing 3D printing technology 정준형, 현지훈, 정희상, 고휘재, 이주희, 안요섭 p. 81-89

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스마트 디바이스 기반 유지보수 관리자용 자동화 모델 구축에 관한 연구 = Research on the construction of an automation model for maintenance managers based on smart devices 박지환, 정수완, 이서준, 송진우, 권순욱 p. 72-80

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건설산업 생산체계 개편에 따른 건설보증시장 변화 예측 조사 = Prediction survey on construction guarantee market due to the restructuring of the construction industry's production system 김성일, 장철기, 유현지 p. 63-71

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초고층 공동주택 RC 공사의 생산성 및 타워크레인 가동율 분석 = Productivity analysis of reinforced concrete works and tower crane working ratio for high-rise apartment buildings 권지훈, 허영기 p. 55-62

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건설현장의 추락 및 접촉사고 방지를 위한 스마트 세이프티 센서 개발 = Development of smart safety sensors to prevent falling and contact accidents at construction sites 이주희, 안요섭 p. 47-54

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모듈러 건축의 타워크레인 배치계획 수립을 위한 다중 최적화 모델 개발 = Multi-objective optimization model for tower crane layout planning in modular construction 윤성부, 박문서, 정민혁, 현호상, 안수호 p. 36-46

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사회기반시설 이용특성에 따른 공동주택의 가격 영향에 관한 연구 : Analysis of effect of infrastructure property on an apartment housing price : focused on urban subway system in Seoul metropolitan area / 수도권 도시철도를 중심으로 배상영, 이상엽 p. 27-35

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키워드 빈도분석을 통한 OSC (Off-Site Construction) 프로젝트의 성공요인 고찰 : A study on the critical success factors of off-site construction through keyword frequency analysis : a literature review of overseas research / 해외연구 문헌고찰을 중심으로 정서영, 유정호 p. 13-26

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혼합현실 도입 오피스 건물 리모델링 프로젝트 설계 의사결정 지원 = A study on supporting design decision making in office building remodeling projects by introducing mixed reality 한무열, 백관엽, 이경태, 고선주, 김주형 p. 3-12

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참고문헌 (28건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 Abdelmegid, M.A., Shawki, K.M., and Abdel-Khalek, H. (2015). “GA optimization model for solving tower crane location problem in construction sites.” Alexandria Engineering Journal, 54(3), pp. 519-526. 미소장
2 Al-Hussein, M., Niaz, M.A., Yu, H., and Kim, H. (2006). “Integrating 3D visualization and simulation for tower crane operations on construction sites.” Automation in construction, 15(5), pp. 554-562. 미소장
3 Briskorn, D., and Dienstknecht, M. (2019). “Mixed-integer programming models for tower crane selection and positioning with respect to mutual interference.”European Journal of Operational Research, 273(1), pp. 160-174. 미소장
4 Deb, K., Pratap, A., Agarwal, S., and Meyarivan, T.A.M.T. (2002). “A fast and elitist multiobjective genetic algorithm: NSGA-II.” IEEE transactions on evolutionary computation, 6(2), pp. 182-197. 미소장
5 Han, S., Bouferguene, A., Al-Hussein, M., and Hermann, U. (2017). “3D-based crane evaluation system for mobile crane operation selection on modular-based heavy construction sites.” Journal of Construction Engineering and Management, 143(9), 04017060. 미소장
6 Han, S., Hasan, S., Bouferguene, A., Al-Hussein, M., and Kosa, J. (2018). “An integrated decision support model for selecting the most feasible crane at heavy construction sites.” Automation in Construction, 87, pp. 188-200. 미소장
7 Hasan, S., Bouferguene, A., Al-Hussein, M., Gillis, P., and Telyas, A. (2013). “Productivity and CO2 emission analysis for tower crane utilization on high-rise building projects.” Automation in Construction, 31, pp. 255-264. 미소장
8 Huang, C., Wong, C.K., and Tam, C.M. (2011). “Optimization of tower crane and material supply locations in a high-rise building site by mixed-integer linear programming.” Automation in Construction, 20(5), pp. 571-580. 미소장
9 Huang, C., Li, R., Fu, Y., and Ireland, V. (2019). Optimal Selection and Location of Tower Crane for the Construction of Prefabricated Buildings with Different Prefabrication Ratios. Journal of Engineering Science &Technology Review, 12(6). 미소장
10 Irizarry, J., and Karan, E.P. (2012). “Optimizing location of tower cranes on construction sites through GIS and BIM integration.” Journal of information technology in construction (ITcon), 17(23), pp. 351-366. 미소장
11 Jeong, G., Lee, H., Park, M., Hyun, H., Kim, H. (2019). “Cause Analysis and Reduction of Safety Accident in Modular Construction – Focusing on Manufacturing and Construction Process -.” Journal of the Architectural Institute of Korea Structure & Construction, 35(8), pp. 157-168. 미소장
12 Ji, Y., and Leite, F. (2020). “Optimized Planning Approach for Multiple Tower Cranes and Material Supply Points Using Mixed-Integer Programming.” Journal of Construction Engineering and Management, 146(3), 04020007. 미소장
13 Kang, S.C., and Miranda, E. (2008). “Computational methods for coordinating multiple construction cranes.” Journal of Computing in Civil Engineering, 22(4), pp. 252-263. 미소장
14 Khodabandelu, A., Park, J., and Arteaga, C. (2020). “Crane operation planning in overlapping areas through dynamic supply selection.” Automation in Construction, 117, 103253. 미소장
15 Kim, Y., and Park, C. (2008). “Optimal Design of Residential Ventilation Systems using Integration of Genetic Algorithm, Pareto Optimality and CONTAMW 2.4.”Journal of the Architectural Institute of Korea Planning & Design, 24(1), pp. 237-245. 미소장
16 Kim, J.H., Park, M., Lee, H.S., and Hyun, H. (2018). “Alternative evaluation model for tower crane operation plan in modular construction-focusing on modular unit installation and finishing works.” Korean Journal of Construction Engineering and Management, KICEM, 19(2), pp. 50-60. 미소장
17 Lee, D., Hyun, H., Park, M., and Lee, H. (2016). “Tower Crane Location and Capacity Selection Model for the Mid-to-high-rise Modular Construction.” Journal of the Architectural Institute of Korea Structure &Construction, 32(11), pp. 27-36. 미소장
18 Marzouk, M., and Abubakr, A. (2016). “Decision support for tower crane selection with building information models and genetic algorithms.” Automation in Construction, 61, pp. 1-15. 미소장
19 Moussavi Nadoushani, Z.S., Hammad, A.W., and Akbarnezhad, A. (2017). “Location optimization of tower crane and allocation of material supply points in a construction site considering operating and rental costs.” Journal of Construction Engineering and Management, 143(1), 04016089. 미소장
20 Olearczyk, J., Al-Hussein, M., and Bouferguène, A. (2014). “Evolution of the crane selection and on-site utilization process for modular construction multilifts.”Automation in construction, 43, pp. 59-72. 미소장
21 Shapira, A., and Goldenberg, M. (2005). “AHP-based equipment selection model for construction projects.”Journal of construction engineering and management, 131(12), pp. 1263-1273. 미소장
22 Shapira, A., and Goldenberg, M. (2007). “Soft” considerations in equipment selection for building construction projects. Journal of construction engineering and management, 133(10), pp. 749-760. 미소장
23 Taghaddos, H., Hermann, U., and Abbasi, A. (2018). “Automated Crane Planning and Optimization for modular construction.” Automation in Construction, 95, pp. 219-232. 미소장
24 Yeoh, J.K., and Chua, D.K. (2017). “Optimizing crane selection and location for multistage construction using a four-dimensional set cover approach.” Journal of Construction Engineering and Management, 143(8), 04017029. 미소장
25 Yoon, J., Lee, J., and Kim, D. (2013). “Feature Selection in Multi-label Classification using NSGA-II Algorithm.”Journal of KISS : Software and Applications, 40(3), pp. 133-140 미소장
26 Younes, A., and Marzouk, M. (2018). “Tower cranes layout planning using agent-based simulation considering activity conflicts.” Automation in construction, 93, pp. 348-360. 미소장
27 Zhang, P., Harris, F.C., and Olomolaiye, P.O. (1996). “A computer‐based model for optimizing the location of a single tower crane: Authors claim 20–40% of hook horizontal travelling time can be saved if located at the position recommended by the model.” Building research and information, 24(2), pp. 113-123. 미소장
28 Zhang, P., Harris, F.C., Olomolaiye, P.O., and Holt, G.D. (1999). “Location optimization for a group of tower cranes.” Journal of construction engineering and management, 125(2), pp. 115-122. 미소장