STILORMADE | Highly efficient non-standard solar modules manufactured through an automated, reconfigurable mass production processes delivering 30% reduction in costs

Summary
STILORMADE will validate an innovative technology platform (developed by S’Tile) for the design and manufacture
of customized (non-standard) photovoltaic modules achieving >18% module efficiency with tailored mode of
operation (current and voltage), >99% production reproducibility, operational thermal (environmental) stability, and
mechanical flexibility; at a production cost of 50% power (efficiency)
improvement compared to existing custom modules at >30% lower costs. The design freedoms enabled by the
STILORMADE platform empower product designers to fully integrate customized PV systems into their product
architectures with beautiful / stylised aesthetic appeal and without compromising performance or cost. Flexible
automated production processes enable the platform to rapidly reconfigure to the needs of niche markets enabling
rapid growth through mass customisation. Cell and module design and simulation software developed by TU-Wien
will be upgraded to enable faster design and optimisation of custom modules meeting unique client requirements. The
customised modules will be integrated into two product applications (Building Integrated Photovoltaics and Solar Street
Lighting) representing two of the largest markets for non-standard solar cells and validated at market replication sites
in Spain, Israel and France. Market replication results will be demonstrated to over300 potential users (manufacturers
of solar street lighting products, architects, construction companies, etc…) and stakeholders to accelerate market takeup
and exploitation. This will enable the consortium to capture ~1.5% of the €7 billion global customised modules
market five years after commercialisation, translating to consortium revenues of over €200m and a >66 fold return
on investment.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/737884
Start date: 01-01-2017
End date: 31-03-2019
Total budget - Public funding: 3 839 691,11 Euro - 2 836 035,00 Euro
Cordis data

Original description

STILORMADE will validate an innovative technology platform (developed by S’Tile) for the design and manufacture
of customized (non-standard) photovoltaic modules achieving >18% module efficiency with tailored mode of
operation (current and voltage), >99% production reproducibility, operational thermal (environmental) stability, and
mechanical flexibility; at a production cost of 50% power (efficiency)
improvement compared to existing custom modules at >30% lower costs. The design freedoms enabled by the
STILORMADE platform empower product designers to fully integrate customized PV systems into their product
architectures with beautiful / stylised aesthetic appeal and without compromising performance or cost. Flexible
automated production processes enable the platform to rapidly reconfigure to the needs of niche markets enabling
rapid growth through mass customisation. Cell and module design and simulation software developed by TU-Wien
will be upgraded to enable faster design and optimisation of custom modules meeting unique client requirements. The
customised modules will be integrated into two product applications (Building Integrated Photovoltaics and Solar Street
Lighting) representing two of the largest markets for non-standard solar cells and validated at market replication sites
in Spain, Israel and France. Market replication results will be demonstrated to over300 potential users (manufacturers
of solar street lighting products, architects, construction companies, etc…) and stakeholders to accelerate market takeup
and exploitation. This will enable the consortium to capture ~1.5% of the €7 billion global customised modules
market five years after commercialisation, translating to consortium revenues of over €200m and a >66 fold return
on investment.

Status

CLOSED

Call topic

FTIPilot-01-2016

Update Date

11-05-2024
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Interoperability (ICT)
Industrial Reference ICT Architectures
Reference Architectural Model Industrie 4.0 (RAMI 4.0)
RAMI 4.0 Vertical Axis and associated standards
Communication Layer (RAMI 4.0)
ISO/IEC 30165 - Internet of Things (IoT) -Real-time IoT framework
FTIPilot-01-2016 Fast Track to Innovation Pilot