Abstract

The design of a hybrid solar generation module based on high-efficiency silicon solar cells with a solar radiation mirror concentrator and a solar cell cooling system for the construction of a high-performance solar power station is described in this article. The need for this research is focused on the experimentally proven effect of working temperature and solar radiation power on performance. The need of this work supported through an experiment established influence of the operating temperature and radiation power on the potency of business production semiconducting material solar cells. In planned style, concentrator of radiation provides in 1.5-time increase of power generating by module, and at constant time water-cooling system will doubly scale back potency losses from solar cells heating by reducing the equilibrium temperature of the module up to ten degrees. In apply the conclusion of planned hybrid solar generating module can scale back the quantity of modules required to create solar power station varied temperature studies square measure conducted.

Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call