Service Topic / CAPABILITY

3D Simulation

Use 3D modeling and process simulation to identify layout, rhythm, and trial-run risks earlier, reducing the cost of trial and error and shortening ramp-up time.

Key capability 01
Physical trial and error is still used for on-site changes, creating long cycles, high cost, and high risk.
Key capability 02
Production-line layouts and logistics routes are not quantitatively validated, so bottlenecks are hard to identify in advance.
Key capability 03
New product introduction lacks visual rehearsal, which increases pilot-build uncertainty.
3D Simulation cover

Scenario Challenges

  • Physical trial and error is still used for on-site changes, creating long cycles, high cost, and high risk.
  • Production-line layouts and logistics routes are not quantitatively validated, so bottlenecks are hard to identify in advance.
  • New product introduction lacks visual rehearsal, which increases pilot-build uncertainty.
  • Solution review lacks one shared data baseline, slowing decision-making.

Service Positioning

Through 3D modeling and simulation analysis, we move validation from physical trial and error to digital verification, providing a visual decision basis for line planning, process optimization, and ramp-up decisions.

Core Capabilities

1) 3D Scene Modeling

  • Digitally rebuild process units, equipment layouts, and logistics routes.
  • Maintain reusable model assets with version control.

2) Process Simulation Analysis

  • Evaluate takt time, bottlenecks, conflict points, and resource utilization.
  • Support sensitivity analysis under different operating constraints.

3) Multi-Option Comparison and Optimization

  • Compare multiple solution options quickly on the same data baseline.
  • Output key-metric differences to support management decisions.

4) Pre-Implementation Rehearsal

  • Rehearse renovation plans, test procedures, and ramp-up paths.
  • Identify high-risk steps early and prepare countermeasures.

Typical Application Scenarios

  • Evaluation of new or redesigned production-line layouts.
  • Optimization of rhythm and capacity balance for critical operations.
  • Process feasibility verification before new product introduction.
  • Assessment of operating and maintenance impact after equipment upgrades.

Implementation Flow

  1. Define the scenario and confirm target metrics.
  2. Collect data and build the 3D model.
  3. Run simulations and diagnose bottlenecks.
  4. Optimize and compare solution options.
  5. Output implementation recommendations and track validation.

Measurable Benefits

  • Lower the cost of on-site trial production and reconstruction.
  • Shorten the review cycle and decision path for solution options.
  • Improve the success rate of new lines and new product introductions.
  • Strengthen cross-functional collaboration around the same model baseline.

Synergy

  • Linked with collaborative design: reuse parameter models and reduce repeated modeling.
  • Linked with T-MOM and MES: verify planning rhythm and execution feasibility.
  • Linked with equipment management: assess post-upgrade operating and maintenance impact.

Image Suggestions (Replaceable)

  • 3D simulation overview: /images/en/placeholders/services/digital-platform-3d-simulation/cover.jpg
  • Line-layout and logistics-route simulation: /images/en/placeholders/services/digital-platform-3d-simulation/scene-01.jpg
  • Rhythm and bottleneck analysis: /images/en/placeholders/services/digital-platform-3d-simulation/scene-02.jpg
  • Option comparison and decision dashboard: /images/en/placeholders/services/digital-platform-3d-simulation/scene-03.jpg
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