Contact company icon Add as a preferred source Download PDF version
Summary is AI-generated, newsdesk-reviewed
  • Ensenso 3D camera ensures precise detection, alignment in aircraft assembly with digital automation.
  • Digital process increases precision, reduces production time, and enhances data traceability in manufacturing.
  • Camera-based system improves quality in cabin assembly, ready for cross-industry application.

An Ensenso 3D camera from IDS Imaging Development Systems GmbH plays a crucial role in enhancing accuracy for drilling positions during aircraft cabin assembly.

This advanced technology is part of the DiCADeMA project (Digital Cabin Architectures and Design for Manufacturing), spearheaded by the German Aerospace Centre (DLR). The project aims to fully connect processes digitally, improving precision in modern aircraft production by ensuring all components are accurately positioned for safety and quality.

Marking drilling positions

The project's cornerstone is the creation of a continuous digital link from initial design to actual production. Modifications in cabin design, including seat placement or luggage compartment adjustments, are updated directly within the digital design data and seamlessly migrated to production planning. Before any physical production begins, simulations validate these changes.

The project's cornerstone is the creation of a continuous digital link from initial design to actual production

A tangible demonstration involves an automated system to mark drilling positions on an aircraft frame mock-up. This involves several networked systems working in harmony. An autonomous mobile robot (AMR) positions itself strategically near the frame, carrying a lightweight robot that places a marking unit, equipped with a 3D camera, for precise alignment.

Precision through correction values

The camera, an Ensenso N36, employs a three-dimensional point cloud to compare with the CAD data of the aircraft frame.

This comparison identifies any minor deviations, enabling the system to compute precise correction values that are communicated to the Manufacturing Execution System (MES) for control commands. Data exchange occurs securely through a standardised OPC UA interface. The AMR's positioning accuracy of five millimetres ensures the camera's optimal alignment position without collision risk.

Iterative minimisation process

The Ensenso camera acts as a vital connection between digital designs and tangible manufacturing, identifying local geometries and comparing them with reference data.

Techniques like hand–eye calibration facilitate an iterative minimisation process, yielding a transformation matrix for exact drilling position correction. This precise correction allows accurate setting of the drilling position every time.

Performance under demanding conditions

The process is repeated for each installation point with robots and humans co-existing safely

An operator follows the robot, drilling immediately after marking. The process is repeated for each installation point with robots and humans co-existing safely. 

The compact Ensenso N36 camera requires minimal working distance, ensuring high accuracy with reduced robot movement. Suited for challenging conditions, its design allows efficient installation, either fixed or on a robot arm, enhancing its versatility for capturing both moving and stationary objects.

Effective operation in challenging environments

The Ensenso camera's integrated projector projects high-contrast patterns onto objects, aiding feature detection even in poor lighting conditions.

The pre-calibrated camera system simplifies and accelerates the setup process. The DLR benefits from improved precision and repeatability due to camera-based alignment, while comprehensive data acquisition offers complete process documentation and traceability. Reduced production times and the elimination of manual adjustments enable assembly teams to focus on construction rather than alignment.

Potential applications beyond aircraft manufacturing

The mock-up demonstration highlights the potential of combining digital processes, robotics, and 3D imaging, with further project phases set to refine system accuracy and algorithm efficiency.

This system, though currently tested in aircraft manufacturing, could revolutionise other industries. It exemplifies how optical sensor technology and smart software advance manufacturing to be networked, efficient, and precisely on target.

In case you missed it

Responsible AI adoption starts with governance
Responsible AI adoption starts with governance

The eagerness to adopt AI in physical security is increasing as teams want to implement technology solutions for faster, smarter operations. At the same time, the conversations sur...

How AI-enabled cameras are becoming operational sensors that power safety, automation, and business intelligence
How AI-enabled cameras are becoming operational sensors that power safety, automation, and business intelligence

The biggest return on investment from an AI-enabled camera might have nothing to do with security. Organisations are increasingly discovering that the same cameras installed to pro...

Solink's AI agents boost efficiency of existing infrastructure with automation
Solink's AI agents boost efficiency of existing infrastructure with automation

Deploying artificial intelligence (AI) tools should be seen as a business initiative rather than a technology initiative, says Martin Soukup, CTO of Solink, a cloud-based video sec...