Immersive Metrology: Integrate mixed reality and evaluate potential

immersive-metrology

2018
Topic
Client
My Role

How does Mixed Reality's spatial visualization enhance the analysis of complex production data?

Immersive Metrology: Integrate mixed reality and evaluate potential
2018
Case Study (external)
Topic
Mixed Reality
Research
Client
ZEISS Industrial Quality Solutions
My Role
Project Management, Spatial Interaction Design
Design Studio
Intuity Media Lab

As a designer at Intuity, I played a key role in developing a research project that innovatively combined measurement, tracking, and augmentation technologies. In my role, I was responsible for project management and interaction design to create a cutting-edge application for ZEISS Industrial Metrology.

Our goal was to optimize the measurement process and evaluate its economic feasibility. By visualizing real-time measurement data holographically directly on the component, we enabled a seamless and efficient workflow for metrology technicians during handheld laser scanning. I focused on designing intuitive interactions and precise spatial representations to make the technology both tangible and user-friendly.

This experience demonstrated the powerful potential of combining spatial computing with industrial metrology — and how essential thoughtful design is for success of new digital tools.

Key learning

- Spatial Data Visualization & Workflow Optimization: Mixed Reality enables real-time visualization of measurement data directly on components, streamlining handheld laser scanning.

- Instant Quality Checks & Real-Time Feedback: The ZEISS T-Scan with MR supports immediate target-actual comparisons, accelerating quality assurance.

- Intuitive, Guided User Experience: Audio-visual support and real-time feedback via HoloLens simplify complex tasks and enhance long-term analysis.

Many thanks to the team at ZEISS Industrial Metrology and Intuity Media Lab for their trust into the future vision.

As a designer at Intuity, I played a key role in developing a research project that innovatively combined measurement, tracking, and augmentation technologies. In my role, I was responsible for project management and interaction design to create a cutting-edge application for ZEISS Industrial Metrology.

Our goal was to optimize the measurement process and evaluate its economic feasibility. By visualizing real-time measurement data holographically directly on the component, we enabled a seamless and efficient workflow for metrology technicians during handheld laser scanning. I focused on designing intuitive interactions and precise spatial representations to make the technology both tangible and user-friendly.

This experience demonstrated the powerful potential of combining spatial computing with industrial metrology — and how essential thoughtful design is for success of new digital tools.

Key learning

- Spatial Data Visualization & Workflow Optimization: Mixed Reality enables real-time visualization of measurement data directly on components, streamlining handheld laser scanning.

- Instant Quality Checks & Real-Time Feedback: The ZEISS T-Scan with MR supports immediate target-actual comparisons, accelerating quality assurance.

- Intuitive, Guided User Experience: Audio-visual support and real-time feedback via HoloLens simplify complex tasks and enhance long-term analysis.

Many thanks to the team at ZEISS Industrial Metrology and Intuity Media Lab for their trust into the future vision.

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As a designer at Intuity, I played a key role in developing a research project that innovatively combined measurement, tracking, and augmentation technologies. In my role, I was responsible for project management and interaction design to create a cutting-edge application for ZEISS Industrial Metrology.

Our goal was to optimize the measurement process and evaluate its economic feasibility. By visualizing real-time measurement data holographically directly on the component, we enabled a seamless and efficient workflow for metrology technicians during handheld laser scanning. I focused on designing intuitive interactions and precise spatial representations to make the technology both tangible and user-friendly.

This experience demonstrated the powerful potential of combining spatial computing with industrial metrology — and how essential thoughtful design is for success of new digital tools.

Key learning

- Spatial Data Visualization & Workflow Optimization: Mixed Reality enables real-time visualization of measurement data directly on components, streamlining handheld laser scanning.

- Instant Quality Checks & Real-Time Feedback: The ZEISS T-Scan with MR supports immediate target-actual comparisons, accelerating quality assurance.

- Intuitive, Guided User Experience: Audio-visual support and real-time feedback via HoloLens simplify complex tasks and enhance long-term analysis.

Many thanks to the team at ZEISS Industrial Metrology and Intuity Media Lab for their trust into the future vision.

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