Solar PV Performance Analysis

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Solar PV Performance Analysis

Photovoltaic system performance is generally dependent on incident irradiance in the plane of the solar panels, the temperature of the solar cells, and the spectrum of the incident light.

PV is a way of representing the current value of future cash flows, based on the principle that money in the present is worth more than money in the future. Present value is used to value the income from loans, mortgages, and other assets that may take many years to realize their full value./p>

To Improve effiency of PV one way to achieve this is by using silicon oxide layers to trap more sunlight and a transparent conducting oxide layer to reduce absorption losses. Surface gratings can reduce reflection on the surface of a cell and enhance internal reflection improving the cell's optical and electrical properties

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Solar PV Components

This are 4 types of Solar PV Components

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Solar Panel

PV Components
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Solar Inverter

PV Components
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Solar Racking

PV Components
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Storage Unit

PV Components

Performance Analysis

Solar energy has enormous potential to serve for present energy demand of the world. Photovoltaic is an elegant process of converting the sun energy into electricity. Photovoltaic cells become matchless in transforming the sunshine into electrical energy with no air and noise pollutions.

n this work an effort had been made for estimating the effects of dust addition and ambient temperature on conversion efficiency of a 62 KWp Rooftop SPV module.

The performance has been evaluated by use of Capacity Utilization Factor and Performance Ratio parameters. This work estimating the decrease in the output power and conversion efficiency as a function of dust accumulation & ambient temperature.

Specification

Cells' temperature of 25° (77°)

Light intensity

1000 Watts per square meter

Density

Atmospheric density of 1.5

Level Above

Solar panel at 500 feet above sea level.