Industry 4.0

This section presents an Industry 4.0 trajectory: concrete flow-simulation practice, prototyping foundations, and a structured interest in ROS, Arduino, and Raspberry Pi.

Flow modeling

Represent an industrial behavior with enough fidelity to analyze expected interactions and constraints.

Simulation and validation

Test a logic, observe its effects, and confirm its relevance before committing heavier resources.

Prototyping and robotics

Consolidate foundations acquired through training on ROS, Arduino, and Raspberry Pi, with the goal of applying them progressively to industrial exploration topics.

Simulation, robotics, and prototyping within an Industry 4.0 logic

Emulate3D is the most concretely practiced part at this stage. ROS, Arduino, and Raspberry Pi come from training foundations and form a progressive development axis.

  • 3D simulation with Emulate3D to model an intralogistics system and validate flow logic.
  • Use of Quick Logic to establish the initial behavioral layer efficiently.
  • Participation in 3D layout work and early exploration around C# add-ins.
  • Training on Emulate3D completed through a recognized distributor.
  • ROS training completed, with the intention to consolidate practice on concrete use cases.
  • Arduino and Raspberry Pi foundations acquired through training, useful for sensors, prototyping, and Industry 4.0 demonstrators.
  • Progressive approach: start from concrete use cases before industrializing these components.

WMS connected to a Unity simulation

A local demonstrator for designing parcel workflows, following orders, and connecting a Blazor application to a Unity simulation.

Explore the project

The objective is not to accumulate Industry 4.0 components, but to compose a system that remains readable, useful, and maintainable.