Performance of different photovoltaic technologies for amorphous silicon (A-SI)‎ and copper indium gallium di-selenide (CIGS)‎ photovoltaic modules

Joint Authors

Kadia, Nur Jamil
Abd Allah, Adi I.
Hashim, Imad Talib

Source

Journal of Engineering and Sustainable Development

Issue

Vol. 26, Issue 1 (31 Jan. 2022), pp.95-105, 11 p.

Publisher

al-Mustansyriah University College of Engineering

Publication Date

2022-01-31

Country of Publication

Iraq

No. of Pages

11

Main Subjects

Energy Engineering

Topics

Abstract EN

In this work, the analysis of performance of two types of photovoltaic (PV) (Amorphous Silicon (a-Si) Copper Indium Gallium Diselenide (CIGS) technologies were achieved out under under Iraqi (Baghdad)climate conditions.

The elevation of the selected site is 9 m above ground level.

The experimental work covered the eight commercially available PV technologies.

The two technologies that employed in this work are, Amorphous Silicon (a-Si) and Copper Indium Gallium Diselenide (CIGS).

The total period of the experimental work was 7 months, and the data were analyzed simultaneously.

Special attention is given to the influence of temperature and solar radiation the performance of the PV modules.

Where, it was proposed a simple I-V curve test for PV modules.

The results showed that the proposed system successfully experimentally extracted I-V curves of the selected two PV modules (amorphous and CIGS solar modules).

The maximum values of power (Pmax) at solar radiation intensity 750 W/m² are 2.742 W, and 2.831 W for amorphous silicon and copper indium gallium di-selenide respectively.

This is occurred because the lowest solar module operating temperature (19 oC and 17 oC for solar radiation 750 and 1000 W/m2 respectively) and ambient temperature (7 oC) and for Jan.

, 2021 than other months.

Consequently, the same behavior for the two modules at solar irradiance 1000 W/m2 with the highest power value; 2.680 W, and 3.198 W of amorphous silicon and copper indium gallium di-selenide respectively.

Furthermore, the minimum values of power (Pmax) at solarradiation intensity 750 W/m² are 2.530, and 2.831 for amorphous silicon and copper indium gallium di-selenide respectively because we have the highest solar module operating temperature (57 oC, and 55 oC respectively) and ambient temperature (45 oC) for April, 2021 than other months.

Consequently, the same behavior for the two modules at solar irradiance 1000 W/m2 with the highest power value; 2.680 W, and 3.198 W of amorphous silicon and copper indium gallium di-selenide respectively.

The highest efficiency can be notes for CIGS solar module with a value 7.3% , while the lowest one is 5.5% for amorphous solar In this work, the analysis of performance of two types of photovoltaic (PV) (Amorphous Silicon (a-Si) Copper Indium Gallium Diselenide (CIGS) technologies were achieved out under under Iraqi (Baghdad)climate conditions.

The elevation of the selected site is 9 m above ground level.

The experimental work covered the eight commercially available PV technologies.

The two technologies that employed in this work are, Amorphous Silicon (a-Si) and Copper Indium Gallium Diselenide (CIGS).

The total period of the experimental work was 7 months, and the data were analyzed simultaneously.

Special attention is given to the influence of temperature and solar radiation the performance of the PV modules.

Where, it was proposed a simple I-V curve test for PV modules.

The results showed that the proposed system successfully experimentally extracted I-V curves of the selected two PV modules (amorphous and CIGS solar modules).

The maximum values of power (Pmax) at solar radiation intensity 750 W/m² are 2.742 W, and 2.831 W for amorphous silicon and copper indium gallium di-selenide respectively.

This is occurred because the lowest solar module operating temperature (19 oC and 17 oC for solar radiation 750 and 1000 W/m2 respectively) and ambient temperature (7 oC) and for Jan.

, 2021 than other months.

Consequently, the same behavior for the two modules at solar irradiance 1000 W/m2 with the highest power value; 2.680 W, and 3.198 W of amorphous silicon and copper indium gallium di-selenide respectively.

Furthermore, the minimum values of power (Pmax) at solarradiation intensity 750 W/m² are 2.530, and 2.831 for amorphous silicon and copper indium gallium di-selenide respectively because we have the highest solar module operating temperature (57 oC, and 55 oC respectively) and ambient temperature (45 oC) for April, 2021 than other months.

Consequently, the same behavior for the two modules at solar irradiance 1000 W/m2 with the highest power value; 2.680 W, and 3.198 W of amorphous silicon and copper indium gallium di-selenide respectively.

The highest efficiency can be notes for CIGS solar module with a value 7.3% , while the lowest one is 5.5% for amorphous solar module.

American Psychological Association (APA)

Kadia, Nur Jamil& Hashim, Imad Talib& Abd Allah, Adi I.. 2022. Performance of different photovoltaic technologies for amorphous silicon (A-SI) and copper indium gallium di-selenide (CIGS) photovoltaic modules. Journal of Engineering and Sustainable Development،Vol. 26, no. 1, pp.95-105.
https://search.emarefa.net/detail/BIM-1401317

Modern Language Association (MLA)

Abd Allah, Adi I.…[et al.]. Performance of different photovoltaic technologies for amorphous silicon (A-SI) and copper indium gallium di-selenide (CIGS) photovoltaic modules. Journal of Engineering and Sustainable Development Vol. 26, no. 1 (Jan. 2022), pp.95-105.
https://search.emarefa.net/detail/BIM-1401317

American Medical Association (AMA)

Kadia, Nur Jamil& Hashim, Imad Talib& Abd Allah, Adi I.. Performance of different photovoltaic technologies for amorphous silicon (A-SI) and copper indium gallium di-selenide (CIGS) photovoltaic modules. Journal of Engineering and Sustainable Development. 2022. Vol. 26, no. 1, pp.95-105.
https://search.emarefa.net/detail/BIM-1401317

Data Type

Journal Articles

Language

English

Notes

-

Record ID

BIM-1401317