A Monolithic Microconcentrator Receiver For A Hybrid PV-Thermal System: Preliminary Performance
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Authors
Walters, Daniel
Everett, Vernie
Vivar, Marta
Harvey, Judith
Van Scheppingen, Ruud
Surve, Sachin
Muric-Nesic, Jelena
Blakers, Andrew
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Springer
Abstract
An innovative hybrid PV-thermal microconcentrator (MCT) system is being jointly developed by Chromasun Inc., San Jose, California, and at the Centre for Sustainable Energy Systems, Australian National University. The MCT aims to develop the small-scale, roof-top market for grid-integrated linear CPV systems. A low profile, small footprint enclosure isolates system components from the environment, relaxing the demands on supporting structures, tracking, and maintenance. Net costs to the consumer are reduced via an active cooling arrangement that provides thermal energy suitable for water and space heating, ventilation, and air conditioning (HVAC) applications. As part of a simplified, low-cost design, an integrated substrate technology provides electrical interconnection, heat sinking, and mechanical support for the concentrator cells. An existing, high-efficiency, one-sun solar cell technology has been modified for this system. This paper presents an overview of the key design features, and preliminary electrical performance of the MCT. Module efficiencies of up to 19.6% at 20x concentration have been demonstrated.
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Proceedings of the International Conference on Concentrating Photovoltaic Systems CPV-6
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2037-12-31