Since its beginnings, Airesa was born with the certainty that the circular economy is an
alternative to the traditional linear economy that creates benefits for the entire
society.Therefore, we remain convinced that our mission is to transform as much plastic waste as
possible into recovered materials, thus continuing on the path we have set for ourselves to
contribute to a more sustainable economy, in which resources are used for as long as possible,
maximum value is extracted from them while they are in use, and then products and materials are
recovered and regenerated at the end of their useful life.
Our vision is to be leaders in the recycling sector, paving the way for sustainable development.
Through our work, we pursue efficient resource management to promote their conservation,
ensuring they are available for future generations.
Our values are what have allowed us to grow, always seeking to improve through
innovation, research, environmental commitment, empathy, and social well-being.
AIRESA S.L.U. has been a beneficiary of the European Regional Development Fund, whose objective is to improve the competitiveness of SMEs, and thanks to which it has launched an International Digital Marketing Plan, which will improve its online positioning in foreign markets during 2021. To achieve this, has had the support of the XPANDE DIGITAL Program of the Valencia Chamber of Commerce.
PROJECT CO-FINANCED BY THE EUROPEAN REGIONAL DEVELOPMENT FUND (ERDF) THROUGH THE FEDER OPERATIONAL PROGRAM OF THE VALENCIAN COMMUNITY 2021-2027
Plastic parts classification system using volumetric inspection and articulated robots
AIRESA, S.L.U, is developing this project, with file number IMDIGA/2022/313, which has been
supported by the
VALENCIAN INSTITUTE OF
BUSINESS COMPETITIVENESS (IVACE),
in its aid program for
SME DIGITALIZATION PROJECTS (DIGITALIZA-CV), for fiscal year 2022, and has been
co-financed by the
EUROPEAN REGIONAL DEVELOPMENT FUND
(FEDER) at a percentage of 60% through the FEDER Operational Program of the Valencian
Community 2021-2027.
The objective of this project is the development, integration and
testing of a volumetric and morphology inspection solution for parts using vision solutions
artificial, mainly based on 3D digitization, 2D imaging and Deep Learning, for the
identification of plastic parts on a moving conveyor belt and their subsequent identification
according to morphology and comparison with previously generated three-dimensional models.
For a correct implementation of the inspection system, as the second objective of the project it
is intended to implement primary screening using a vibrating system and after the inspection of
the pieces, two SCARA-type robotic units will be in charge of selecting the pieces with very
fast movements and depositing them on different conveyor belts depending on their
classification.