author Kim Hyun Jun 
2nd author Jinwoo Park
Sunghoon Kim
Sang Hyup Lee
Seung Jin Ha 
presenter Kim Hyun Jun 
info This conference paper has been presented by Kim Hyun Jun the Asia-Simulation Conference. The conference has been held in Jeju, Korea, Republic of, 2015/11/04 ~ 2014/11/07 . 
year 2015 
category IC 
start / end date 2015-11-04 ~ 2015-11-07 
city / nation Jeju / Korea 
학회 AsiaSim 
keywords Lay-out Planning, Priority Policy, Dynamic Programming, Simulation 
abstract Though numerous studies have dealt the lay-out planning methods for shipbuilding industry, in practice the lay-out planning is still done by people under the rule of thumb. It seems illogical to treat such key resource without any scientific management, however matters such as reliability, frequent modifications, and lack of data makes it hard to adapt an automated method in such spatial planning.
To investigate on this problem this paper examines a heavy industry company in Korea and executes a simulation study. The targeted company produces numerous types of offshore plants which all follows varying production processes. So it is told that there exists some special difficulties in predicting and managing newly given constructions. Also another characteristic that makes managing such work difficult is that there exists frequent change requests to design process, quantity, and schedule.
Like many other competitive companies, company H still relies solely on human resource to plan the lay-outs without using any automated systems. This could cause problems such as long hours spent in planning/evaluating the lay-out plan and the difficulty in attaining a substitute for such planning jobs. This is because the current lay-out planning process depends heavily on the experiences of the planner. The difficulty of training a worker to become such specialist is one thing, but to find a substitute in the case of emergency is a more serious problem.
To solve this problem this paper suggests a practical algorithm that can deploy the blocks under a short given time. The system would automatically prioritize the blocks that needs to be placed on the yards and find a location that could maximize the yard utilization and minimize the delays on the site. However because of the uncertainties in the field, such as assembly modifications, contract date delays, and variations in the processing time, it is extremely difficult to find an optimal solution in such short given time.
Studies done by Li(2005) have divided the lay-out process into two separate steps, prescheduling and spatial planning. Here the second step utilized the genetic algorithm. Other researches such as Raj(2007) treated this problem as a 3D bin packing problem, while Zheng(2011) approached this matter using greedy algorithm to minimize the makespan. However none of the previous works considered the uncertainties that exits on the spatial planning process.
So to aid the suggested problem this simulation study aims to find a priority rule to deploy the blocks while considering the uncertainties. Measures such as block size, delayed time of the selected block, and so on would be examined through simulation to find the best performing weights for such variables. Blocks will be prioritized under this rule and will be placed on the yards using the suggested algorithm.
A typical process of such simulation would go through following steps. The first step would be deciding the timeline of deployment. After selecting the timeline target project will be selected. The term project used here is a group of modules and blocks that needs to be placed on the yard. The next step would be choosing the weights for the priority rule. Measures such as delayed time, deployment time, and the size of the block would be considered. By simulating the model while varying the weights of such measures, we will be able to suggest the best performing block selecting policy rule for the spatial lay-out planning. 
번호 category 학회 제목 author presenter year
154 DJ  공동학회春  재난 현장의 구호 자원 운송 차량 경로에 관한 연구 file 한수민  한수민  2016 
153 DC  대한산업공학회  태양광 보급 확산을 통한 전력 자립률 제고에 관한 연구: 서울 지역을 중심으로 file 최상윤  최상윤  2015 
152 DC  한국방재학회  재난 시 돌발 상황 대응 시스템 구축에 관한 연구 file 한수민  최상윤  2016 
151 DC  한국방재학회  사물인터넷을 활용한 재난복구 현장 모니터링 시스템 구축에 관한 연구 file 최상윤  최상윤  2017 
150 DC  한국SCM학회  EPCC1G2 표준을 이용한 RFID기반 PEID 시스템 도입 시 기대효과 분석 file 김영우  김영우  2015 
149 DC  공동학회春  RFID기반의 제조일정계획 및 시행보고시스템에 대한 연구 Kyoungmin Kim  Kyoungmin Kim  2015 
148 DC  CALS/EC  국내 주요 제조산업별 SWOT 분석 및 전략적 결정그리드 분석에 관한 연구 file Gyusun Hwang  Gyusun Hwang  2015 
147 DC  정밀공학  트리 구조의 BOM에 기초한 고성능 MRP 시스템 Hongbum Na    2006 
146 DC  시뮬레이션春  시뮬레이션을 통한 자동차 해체 시스템의 평가 및 개선 Kanghyun K    2006 
145 DC  공동학회春  한국의 자동차 Reverse Supply Chain의 효율적 운영을 위한 정책에 관한 연구 Haejoong Kim    2006 
144 DC  공동학회春  좌표 개념을 활용한 Variant BOM 설계의 새로운 접근법 Jinseon Yoo    2006 
143 DC  산업공학秋  다중사업 수행환경에서 획득가치를 기반한 각 작업의 일정, 비용 통합에 관한 연구 Hyunil Noh    2006 
142 DC  산업공학秋  A Study on Utility Value and Fairness of Information Sharing Myongran O    2006 
141 DC  시뮬레이션秋  역공급사슬 구축 및 운영 비용 산출 방밥에 관한 연구 Hyunjong Jeong    2006 
140 DC  한국SCM  RFID 기술을 활용한 공급 사슬의 성과 측정 프레임워크에 관한 연구 Jangwon Cho    2006 
139 DC  공동학회春  Indoor Location System using Vision and RFID Technology Dongmyung Lee    2007 
138 DC  시뮬레이션春  공급 사슬에서 RFID 기술의 직접적인 효과 분석 Jangwon Cho    2007 
137 DC  공동학회春  혁신 제품을 지원하는 공급사슬에서의 정보 공유 효과에 대한 연구 Jungsub Lee    2007 
136 DC  시뮬레이션春  공급사슬에서의 정보 교환을 실현하기 위한 메커니즘에 대한 연구 Sungho Jo    2007 
135 DC  산업공학秋  제조 전략에 따른 supply chain에서의 RFID system 구축 Sungho Jo    2007