Database providing access to the High Technology Network's industrial research offering: research competences, type of analyses and tests available at the Laboratories. Companies can consult the Catalogue to find Laboratories and researchers that match their needs.

Results: 46
Competence
3D CAD and industrial design
Acoustic analyses in anechoic and semi-anechoic chamber according to standards
Active control of noise and vibration
Agent coordination and roles
Anti-vibration systems: design and installation criteria
Balancing
Brain-computer interfaces
Chatter in machining processes: analysis and reduction
Compliant joints: design and dynamics
Component-based systems (J2EE, .NET)
Contactless experimental vibration measurements using laser doppler vibrometers
Crowdsensing and crowdsourcing
Dynamic / elastodynamic analysis and control (multibody models, lumped-parameter models, etc.)
Entertainment computing
Experimental modal analysis
Experimental noise mapping of industrial products and machinery
Fog computing
HCI for assistive technologies
Human augmentation
Human-computer interaction modeling
Hw / sw customized systems for vibro-acoustic measurements: realization and implementation
Improving the dynamic performance of products or production processes by simulation and / or test
Integration of social network services
Location-based services
Mechanical transmissions: dynamics and control
Middleware design and final products
Mobile Applications
Multimedia content creation
Multimedia mobility
Multimedia processing and search engines
Multimodal adaptive services
Multimodal and Mobile interaction
Product Sound Quality: binaural measurements, metrics and psychoacoustic tests
Reducing noise and vibration (NVH) in industrial products and processes by simulation and / or test
Rotating machinery: measurements of the irregularity of the rotational speed and torsional vibrations
Stream processing
Technologies and Services for Smart City
Transfer Path Analysis (TPA)
Ubiquitus and pervasive systems
Use of multi-layer sound-proofing materials: acoustic optimization through modeling and / or tests