Open Access Open Access  Restricted Access Subscription or Fee Access

Review on Solar Panels a Smart Technology

Abhiney Pandey

Abstract


SolarEdge power optimizers, which are little devices that connect into every solar panel in your array and accomplish three very important things, are included with the solar panels that Power home solar instals. The models "improve energy output from photovoltaic systems by constantly tracking the highest power point of each module individually," according to Solar Edge. That is, solar panels communicate with one another to deliver the maximum amount of power feasible at all times, regardless of the weather. Renewable energy is the ultimate solution, and it's a popular fallacy that it's too costly to integrate with the home right now. Solar energy has the potential to produce benefits that greatly outweigh its costs when paired with energy storage and a smart energy system. The sun is the source of solar energy. Photovoltaic cells convert sunlight, that is made up of energy fragment called "photons," into electricity that may be utilised to power loads. Solar cell, also known as a PV module, seems to be a device made up of solar cells that produce an electrical charge when struck by photons of light from the sun. This current can then be used to supply alternative current devices. Solar cells and solar panel systems are currently utilised to power a variety of devices. Solar cells, in the form of solar panels, are still employed in calculators. They are, however, being used to give solar electricity to entire homes and businesses.


Full Text:

PDF

References


Al Shehri A, Parrott B, Carrasco P, Al Saiari H, Taie I. Accelerated testbed for studying the wear, optical and electrical characteristics of dry cleaned PV solar panels. Solar Energy. 2017 Apr 1;146:8-19.

Mallor F, León T, De Boeck L, Van Gulck S, Meulders M, Van der Meerssche B. A method for detecting malfunctions in PV solar panels based on electricity production monitoring. Solar Energy. 2017 Sep 1;153:51-63.

Bodur M, Ermis M. Maximum power point tracking for low power photovoltaic solar panels. InProceedings of MELECON'94. Mediterranean Electrotechnical Conference 1994 Apr 12 (pp. 758-761). IEEE.

Dias PR, Benevit MG, Veit HM. Photovoltaic solar panels of crystalline silicon: Characterization and separation. Waste Management & Research. 2016 Mar;34(3):235-45.

Hu A, Levis S, Meehl GA, Han W, Washington WM, Oleson KW, Van Ruijven BJ, He M, Strand WG. Impact of solar panels on global climate. Nature climate change. 2016 Mar;6(3):290-4.

Hayat M, Shahnia F, Arefi A, Iu H, Fernando T. Comparison of the economic benefits and the payback periods of rooftop solar panels in Australia. In2017 3rd International Conference on Power Generation Systems and Renewable Energy Technologies (PGSRET) 2017 Apr 4 (pp. 113-117). IEEE.

Barbose G, Satchwell AJ. Benefits and costs of a utility-ownership business model for residential rooftop solar photovoltaics. Nature Energy. 2020 Oct;5(10):750-8.

Boampong R, Brown DP. On the benefits of behind-the-meter rooftop solar and energy storage: The importance of retail rate design. Energy economics. 2020 Feb 1;86:104682.

Akorede MF, Hizam H, Pouresmaeil E. Distributed energy resources and benefits to the environment. Renewable and sustainable energy reviews. 2010 Feb 1;14(2):724-34.

Xu Y, Li J, Tan Q, Peters AL, Yang C. Global status of recycling waste solar panels: A review. Waste Management. 2018 May 1;75:450-8.


Refbacks

  • There are currently no refbacks.