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System Design Research Division

The System Design Research Laboratory aims to enhance the technological and market competitiveness of industrial machinery, including construction and agricultural equipment, as well as specialized machinery used in defense, disaster response, and polar and space exploration.

Through research on design optimization and automation technologies, we strive to improve system performance, efficiency, convenience, and safety, ultimately contributing to the advancement of the construction machinery industry.

Research Areas

Development of Next-Generation Components and Systems for Construction and Agricultural Machinery

  • Ultra-high pressure, high-flow hydraulic systems to support next-generation construction machinery
  • Intelligent machinery and equipment systems for robotic and smart farming applications
  • High-efficiency, low-noise components and systems to meet urban environmental regulations and maximize energy efficiency

Development of Future Advanced Special-Purpose Machinery

  • Design technology for special-purpose machinery and components dedicated to disaster environments and resource development
  • Intelligent special equipment for road paving/maintenance and smart construction materials
  • Future special equipment for related industries (agricultural machinery, shipbuilding, defense)

Development of Automation/Unmanned Solutions Technology

  • Sensing, communication, control, and monitoring technologies for smart industrial machinery
  • System design, condition diagnosis, and health prediction technology for remote monitoring and control to prevent safety accidents
  • Research on artificial intelligence technology based on data pipelines and virtual simulations
Key Achievement1

Jeollabuk-do Flood Safety Industry Facility Support Project

Key Achievement2

Development of a Mobile Drainage System for Flooded Areas

Key Achievement3

Development of a 150-Ton Class Crawler Crane with an Intelligent Safety Management System

Key Achievement4

Development of a Mobile Crusher System with Integrated Control for Automated Processing, Capable of Producing and Screening 400 Tons of Aggregates per Hour

Key Achievement5

Development of an Unmanned Steel Pipe Press-In Machine for Autonomous Deep Foundation Pile Installation Over 40 Meters

Key Achievement6

Development of a Dedicated Vibratory Ripper for Rock Fracturing Capable of Operating at a Compressive Strength of 80 MPa or Higher

Key Achievement7

Development of a Longitudinal and Lateral Interlinked Skateboard Platform and Operation Technology

Key Achievement8

Development of a 70-Ton-Class Autonomous Heavy-Duty Construction Logistics Eco-Friendly Mobility Platform

Key Achievement9

Development of a 110kW-Class Large-Scale Agricultural Tractor

Key Achievement10

Development of a Cloud-Based and Embedded-Control Multi-Seed Precision Planter for Rotary Tiller Attachment

Key Achievement11

Development of an Intelligent Self-Propelled Bale Wrapping Integrated Multi-Function Machine

Key Achievement12

Development of an Intelligent Open-Field Agricultural Transport Robot System with Proximity LiDAR-Based Worker-Following Autonomous Operation

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