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Developing plans and operational techniques to ensure the safety and productivity of modular construction and large-scale Hoisting and transportation equipment

  • UAE Burj Khalifa

  • KL118, Malaysia

Proprietary Technologies

  • Ultra high-rise and heavy load hoisting technology
  • Smart safety technology development and application
  • Development of mechanized and automated construction equipment technology
  • Introduction and promotion of advanced equipment and construction tools

Equipment Construction Efficiency and Safety Technology

GPS-based construction automation (GPS Machine Control)

  • Utilizing GPS and sensors on construction equipment, this technology enables automatic construction control without the need for separate surveying, so builders can quickly achieve the desired design values.
gps를 이용한 장비 위치 데이터 변환 3d 설계 데이터 컨트롤 박스(도면+장비위치 확인) 자동제어 유압회로
Construction Cases
  • Bujeon-Masan railway (tunnel excavation slope earthwork)

  • Son Duong Port, Vietnam (enhanced dredging work efficiency)

  • Jeongok Marine Industrial Complex (automated pavement construction)

Application Benefits
  • Increased productivity

    Improved work efficiency through streamlined surveying tasks, reduced surveying frequency, and decreased surveying workload
  • Improved quality

    Consistently high-quality construction achievable regardless of operator skill level, providing an advantage during quality performance evaluations due to enhanced civil engineering quality
  • Enhanced safety

    Prevents safety accidents by eliminating the need for personnel surveying around excavators, and removing risk factors associated with underwater surveying during underwater construction projects

Survey Automation Using 3D Laser Scanner and Tracker

  • Utilizing laser beams to capture target objects' shapes in 3D and generate blueprints, measuring and recording the current conditions of buildings, civil engineering structures, plants, and natural environments
  • Replacing manual surveying efforts, and providing construction robot location information through survey automation
Construction Cases
  • Hwaseong S3 (precision measurement for structural construction)

  • Yongsan 3 Complex Development (verification of pre-construction load errors)

  • Geoje 2, Busan (provision of construction robot location information)

Application Benefits
  • Quality improvement

    Enhanced accuracy in As-built drawing creation, better construction quality through error management during assembly and installation, measurement errors due to varying surveyor skill levels prevented
  • Rework prevention

    Utilizing accurate As-built drawings to eliminate the need for rework during extension and remodeling projects, enabling a preliminary review of potential issues arising from construction errors during structural assembly and installation

Technical Support for Construction Equipment Planning and Operation

High-rise Lifting Equipment Technical Support

  • Tower crane selection, placement, and operational planning assistance: Conducting optimal equipment selection, placement, and relocation solutions, along with operational planning support
  • Construction lift car selection, placement, and operational planning assistance: Establishing the most suitable construction lift car selection and placement plans, considering on-site conditions
Support Cases
  • KL118, Malaysia

  • Tower crane placement

Heavy Lifting Technical Support

  • Assessing access, reviewing equipment layout, and selecting the optimal crane for transporting and installing large-scale main equipment at plant sites
  • Selecting equipment and evaluating work plans for bridge girder installation and complex lifting operations at civil construction sites
  • Determining equipment and establishing operational plans for lifting and installing heavy materials such as connecting bridges and truss structures at building sites
Support Cases
  • P3 overbridge J, Pyeongtaek

  • P3 overbridge L, Pyeongtaek

  • P3 structural block, Pyeongtaek