The complexity of modern-day high-speed laser systems, like 1 kHz, is increasing, and so is their popularity, which presents a significant challenge in image and data retrieval. The current existing market solutions often require extensive manual intervention and lack streamlined, user-friendly interfaces, creating a margin for error. The gap between advanced technology and user experience is described as one of the core challenges addressed by Industry 5.0. This work proposes a solution to this challenge by developing an IoT-enabled laser system Graphical User Interface (GUI) and dashboard designed to enhance user interaction learning and automate data acquisition. Human-centered design (HCD) simplifies the acquisition of images and data from multiple components, including cameras and sensors. Therefore, this reduces the need for manual intervention, improves efficiency, and reduces errors. This solution bridges the gap between laser technologies and the user, aligning with Industry 5.0 automation principles and focusing on human-centered design.

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Enhancing Human-Centric Design: A User-Friendly GUI Dashboard for Image and Data Acquisition in Laser Systems

  • Andrea Roman,
  • Hadi Keramati,
  • Sanjit Jeevanand,
  • Nicholas Beier,
  • Amina E. Hussein,
  • Rafiq Ahmad

摘要

The complexity of modern-day high-speed laser systems, like 1 kHz, is increasing, and so is their popularity, which presents a significant challenge in image and data retrieval. The current existing market solutions often require extensive manual intervention and lack streamlined, user-friendly interfaces, creating a margin for error. The gap between advanced technology and user experience is described as one of the core challenges addressed by Industry 5.0. This work proposes a solution to this challenge by developing an IoT-enabled laser system Graphical User Interface (GUI) and dashboard designed to enhance user interaction learning and automate data acquisition. Human-centered design (HCD) simplifies the acquisition of images and data from multiple components, including cameras and sensors. Therefore, this reduces the need for manual intervention, improves efficiency, and reduces errors. This solution bridges the gap between laser technologies and the user, aligning with Industry 5.0 automation principles and focusing on human-centered design.