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A Monolithic Microconcentrator Receiver For A Hybrid PV-Thermal System: Preliminary Performance

机译:用于混合式PV-热系统的单片微型浓缩器接收器:初步性能

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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.
机译:Chromasun Inc.,San Jose,California,以及澳大利亚国立大学可持续能源系统中心联合开发了一种创新的混合式PV-热敏微电机(MCT)系统。 MCT旨在开发小规模的屋顶顶级市场,用于网格集成线性CPV系统。较低的轮廓,小型脚印机箱隔离环境部件,放松支持结构,跟踪和维护的需求。消费者的净成本通过主动冷却装置减少,提供适合水和空间加热,通风和空调(HVAC)应用的热能。作为简化的低成本设计的一部分,集成基板技术为集中器电池提供电互连,散热和机械支撑。现有的高效率,一日太阳能电池技术已为该系统进行了修改。本文概述了关键设计特征,MCT的初步电气性能。已经证明了20倍浓度高达19.6%的模块效率。

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