• Title/Summary/Keyword: Automated Construction.

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DEVELOPMENT OF DESIGN FOR AUTOMATION (DFA) BASED ON QUALITY FUNCTION DEPLOYMENT

  • Tae-Hoon Kim;Yoonseok Shin;Wi Sung Yoo;Hunhee Cho;Kyung-In Kang
    • International conference on construction engineering and project management
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    • 2009.05a
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    • pp.1075-1080
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    • 2009
  • Recently, the building construction industry has been forced to cope with lack of skilled labor. A robot-based construction automation system should help overcome crucial troubles which may be caused by this phenomenon. In particular, it is vital to propose design for automation (DFA). Quality function deployment (QFD) is applied a systematic aid in determining the design reflecting customer's needs. This study employs the QFD approach to plan the component designs of an effective automation process, and presents the development process of DFA with an illustrative project. As a result, the study identifies the developers' design requirements for automated construction and weights them by their importance indices.

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A STUDY OF INVOICELESS PROCESS USING RFID IN CONSTRUCTION FIELD

  • Tai Sik Lee ;Kyoung Soon Park ;Ja Kyoung Koo ;Young Hyun Kim
    • International conference on construction engineering and project management
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    • 2005.10a
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    • pp.1250-1255
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    • 2005
  • Application of radio frequency Identification (RFID) technology in construction industry is not that progressive compared with other industries, because of it's high price experimental research. This research focus on potential application of RFID which eliminate manual data entry and introduce the potential for automated processes to increase project productivity, construction safety, and project cost efficiency. This paper suggest an invoiceless system using RFID technology, Process productivity and efficiency for material management is observed through WebCYCLONE and is compared with other processes.

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RELIABILITY TEST OF RFID TECHNOLOGY IN TOOL TRACKING

  • Julian Kang;Jae-Heon Nam
    • International conference on construction engineering and project management
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    • 2005.10a
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    • pp.820-823
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    • 2005
  • RFID technology offers the possibility that tools and valuable supplies tagged with RFID devices could be tacked down automatically. Such automated tool tracking has the potential to reduce theft, identify underutilized tools to be relocated, insure that crafts have access to the appropriate tools as needed, and reduce overhead labor cost of managing tools. Although other industries have been busy to enhance their supply chain management using RFID technology, construction professionals may be wondering whether it works reliably in construction jobsites as well. This paper presents a field test conducted to determine the reliability of RFID technology in identifying tools in the field storage box. The test indicated that RFID technology is reliable in inventorying tools in field storage.

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Preliminary Study on Elemental Factors and Performance Requirements for Robotic Layout System (먹매김 시공 자동화 로봇 요소기술 및 요구성능 도출 기초 연구)

  • Kim, Chowon;Park, Gyu Seon;Ji, Hyunsuh;Kim, Taehoon;Lim, Hyunsu
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2021.05a
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    • pp.257-258
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    • 2021
  • Construction robotics is rapidly forming a market in conjunction with the development of sensing and artificial intelligence technologies. The layout work for accurately constructing the shape and dimensions of the building frame requires high accuracy and precision, and is one of the high demands for productivity and quality improvement through construction automation. Thus, as a preliminary study, we derived the elemental factors and performance requirements for developing an automated layout robot. In addition, alternatives on driving and marking units were investigated based on literature review and practioner's interview. The result of this study will be used as a basic data for the layout robot design.

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3D Ground Terrain Processing Platform for Automated Excavation System

  • Kim, Seok;Kim, Tae-yeong;Park, Jae-Woo
    • International conference on construction engineering and project management
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    • 2015.10a
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    • pp.669-670
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    • 2015
  • Efficient management of the construction heavy equipment is required to reduce the rate of carbon emissions and on-site accidents. The intelligent excavation system (IES) will improve the construction quality and productivity through information technologies and efficient equipment operation, especially in large earthwork projects. Three-dimensional digitized ground data should be required for identifying the path of heavy equipment and work-site environment. Rapid development of terrain laser scanners (TLS) is more readily to acquire the digital data. This study suggests the '3D ground terrain processing platform (3DGTPP)' including data manipulating module and analyzing module of the scanned data for intelligent earthmoving equipment operation. The processing platform consists of six modules, including scanning, registering, manipulating, analyzing, transmitting, and storing. 3D ground terrain processing platform presented in this study will provide fundamental information for intelligent excavation system (IES), which will increase the efficiency of earthworks and safety of workers in significant.

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Optimization of Earthwork Operation for Energy-saving using Discrete Event Simulation

  • Yi, Chang-Yong;Lee, Dong-Eun
    • International conference on construction engineering and project management
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    • 2015.10a
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    • pp.537-539
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    • 2015
  • considerate operation is a major issue in the equipment-intensive operation. Identifying an optimal equipment combination is important to achieve low-energy operations. An Earthwork operation planning system, which measures the energy consumption of construction operations by taking into account construction equipments' engineering attributes (e.g., weight, capacity, energy consumption rate, etc.) and operation conditions (e.g., road condition, attributes of materials to be moved, geometric information, etc.), is essential to achieve the low-energy consumption. This study develops an automated computerized system which identifies an optimal earthmoving equipment fleet minimizing the energy consumption. The system imports a standard template of earthmoving operation model and compares numerous scenarios using alternative equipment allocation plans. It finds the fleet that minimizes the energy consumption by enumerating all cases using sensitivity analysis. A case study is presented to verify the validity of the system.

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A Study on the Additional Properties Management Method for Building Code Automated Checking by BIM (건축인허가 법규에 따른 BIM 정보 관리 방안 연구 )

  • Kim, Byung-Joo;Kim, Gyu-Yong
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.05a
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    • pp.211-212
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    • 2023
  • Building Information Modeling (BIM) design has been mandatory in Korea since 2016, and it has been gradually expanding in the industry, with a slow attempt to apply it in remodeling constructions. This is because Korea is facing a situation where many buildings are over 30 years old and require remodeling or reconstruction. The remodeling industry is also a growing market, as it saves construction time and cost compared to reconstruction. BIM is an ideal technology element for a competitive remodeling construction, as remodeling constructions face a complicated construction process from the start, including demolition, maintenance, and reinforcement to save the change process. However, there are still limitations in applying BIM to remodeling constructions, due to considerations of the existing building and the complicated requests of the inhabitants. BIM still has technical and environmental limitations for general use. In this study, I analyzed BIM application cases from existing studies and suggest what improvement points should be strengthened.

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CONSTRUCTION BUSINESS PROCESS AUTOMATION USING WORKFLOW TECHNOLOGY

  • Dong-Eun Lee
    • International conference on construction engineering and project management
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    • 2005.10a
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    • pp.569-574
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    • 2005
  • This paper presents the core technology of Construction Business Process Automation to model and automate construction business processes. Business Process Reengineering (BPR) and Automation (BPA) have been recognized as one of the important aspects in construction business management. However, BPR requires a lot of efforts to identify, document, implement, execute, maintain, and keep track thousands of business processes to deliver a project. Moreover, existing BPA technologies used in existing Enterprise Resource Planning (ERP) systems do not lend themselves to effective scalability for construction business process management. Application of Workflow and Object Technologies would be quite effective in implementing a scalable enterprise application for construction community. This paper present the technologies and methodologies for automating construction business processes by addressing how: 1) Automated construction management tasks are developed as software components, 2) The process modeling is facilitated by dragging-and dropping task components in a network, 3) Raising business requests and instantiating corresponding process instances are delivered, and 4) Business process instances are executed by using workflow technology based on real-time simulation engine. This paper presents how the construction business process automation is achieved by using equipment reservation and cancellation processes simplified intentionally.

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ROBOTICS AND AUTOMATION IN CONSTRUCTION INDUSTRY

  • Younus Khan;G. Chandra Sekhar Reddy;V.S.S. Kumar
    • International conference on construction engineering and project management
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    • 2005.10a
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    • pp.527-532
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    • 2005
  • The construction industries are facing problems of productivity, quality of work, safety, and the completion of projects in time. In construction industry a worker is exposed to hazardous environment, and has to do more physical work, effecting his health and also productivity. The automation and robotics can offer solution to many problems of the industry. In the past the major barrier to construction automation is the lack of electronic components and systems. This is solved now with the development of information technology, and the current obstacle is the high cost of automated systems, shortage of public money for R&D, and problems of acceptance. The robots employed in construction have followed the same concept as those employed in manufacturing. However, construction industry requires a different kind of robot compared to manufacturing Industry. The robots are stationery and product moves along the assembly line in manufacturing sector, but construction robots have to move about the site because buildings are stationary and of large size. The construction robots must function in adverse weather conditions, including variation in humidity, and temperature and increase the overall construction productivity rate. The major objective of the paper is to review the existing applications of building robots and to assess their implementation in building industry. A case study is considered for the implementation of robots for the painting work of the University Building at Saifabad PG College of Science, Hyderabad, India.

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Critical Success Factors for Efficient Development of Construction Automation Technology (효율적인 건설자동화 기술 개발을 위한 핵심성공요인)

  • Lee, Ung-Kyun;Kim, Baek-Joong;Kim, Taehoon
    • Journal of the Regional Association of Architectural Institute of Korea
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    • v.21 no.6
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    • pp.1-6
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    • 2019
  • Construction automation can be an effective alternative for the lack of skilled labor and loss of productivity. With such a background, Korean government has provided a lot of financial supports for the development of construction automation technology. However, despite of those efforts, automation systems at construction sites have rarely been employed. This is because the systems have not been developed with full consideration of the needs and environments on construction sites. Thus, the purpose of this study is to identify the critical success factors for efficient development of construction automation systems. This study compares and analyzes key factors for automated construction system(ACS) and construction information system(CIS). As a result, 'stability and reliability' in the ACS showed the highest importance while 'manageability' in the CIS was. Consequently, for the successful introduction of the ACS, technical capability and stability should be firstly considered to cope with dynamic construction environment, while the CIS should be built to enable efficient management and use of information. The result of this study can serve as an evaluation base for the current construction automation technologies and an index for more efficient technology development in the future as well.