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Success Case

High-Tech Factory Safety

Ultra-Early Technology Disaster Prevention and Active Notification System

This case involves a renowned technology company with multiple buildings located in different areas of a tech park. These buildings house various processes for producing critical components of high-end servers, along with rapid in-and-out shipment needs. The maintenance, engineering, and information communication departments support the entire park's operations, including water, electricity, and gas management. To align with the company's core philosophy of advanced technological assistance, an autonomous, continuous enterprise management platform has been built over the years. This platform integrates disaster prevention, personnel/vehicle access, raw material/product control, energy management, and site security systems, simplifying the learning process for specialized personnel. In response to recent elite talent shortages, the park implemented the "GKB Technology - Ultra-Early Active Notification Management System" in 2020, gradually establishing a customized management platform within the enterprise.

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Client Needs

  • Concerns about accidents involving outdated equipment.
  • Enhancing the original system's shortcomings to extend its service life.
  • Reducing significant upgrade costs during digital transformation.
  • Moving towards unmanned operations and upgrading logistics services.

Key Issues

  • Various machine rooms and equipment are scattered across different buildings and floors, making patrols difficult.
  • Systems built at different times result in complex and inconsistent management interfaces, making usage difficult.
  • Maintenance personnel leaving the central control room face challenges in handling multiple abnormal events simultaneously.

Solutions

  • Establish a decentralized architecture and AR system for machine room environments, creating a mobile maintenance mechanism.
  • Implement a visual AI flame and smoke detection system to assist maintenance personnel in intervening during the early stages of a disaster.
  • Develop a visual thermal detection system to simulate maintenance personnel using handheld thermal imagers for inspections.
  • Set up a meter reading recognition system for unmanned applications.
  • Create communication interfaces between various systems.
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