E-ISSN 2814-2195 | ISSN 2736-1667
 

Research Article
Online Published: 23 Jan 2026
 


Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems

Umar Muhammad Kangiwa, Samuel Isaac Oseni, Aisha Ibrahim, Mudassir Na-allah, And Muntasir Musa Labbo.


Abstract
The greater global challenges was posed by the current energy demands and irrational utilization of the
world energy resources. Fossil fuels are finite and pose significant risks to the planet’s fragile ecosystems,
making them unsustainable for long-term economic development. Renewable energy sources are
sustainable, alternative to exhaustible fossil fuel reserves, and could be used to eliminate the harm caused
by fossil fuel utilization and satisfy the increasing energy demand globally. This research involved the
application of Thermoelectric Generators (TEG) for cooling systems. The Peltier module (TEG) was
experimentally tested for its capability to produce temperature at cool junction lower than that at hot
junction when electrical power is applied. The results highlighted that the supplied power and the cooling
capacity of the TEG, duly depends on applied current, voltage and temperature difference. Moreover, the
performance coefficient of the module responds to input power and cooling capacity but was directly
proportional to the supplied current and voltage respectively. This confirmed that the use of solar panel
as a source of power supply to the TEG module can be feasible and can produce a better coefficient of
performance of the TEG towards enhancing efficient cooling temperature suitable for fabricating solar
powered thermoelectric cooling system for sustainable domestic applications.

Key words: Thermoelectric Generator; Peltier Module; Renewable Energy; Cooling System


 
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How to Cite this Article
Pubmed Style

Kangiwa UM, Oseni SI, Ibrahim A, Na-allah M, Labbo AMM. Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems. SJACR. 2025; 5(1): 16-25.


Web Style

Kangiwa UM, Oseni SI, Ibrahim A, Na-allah M, Labbo AMM. Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems. https://www.sjacrksusta.com/?mno=307871 [Access: January 23, 2026].


AMA (American Medical Association) Style

Kangiwa UM, Oseni SI, Ibrahim A, Na-allah M, Labbo AMM. Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems. SJACR. 2025; 5(1): 16-25.



Vancouver/ICMJE Style

Kangiwa UM, Oseni SI, Ibrahim A, Na-allah M, Labbo AMM. Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems. SJACR. (2025), [cited January 23, 2026]; 5(1): 16-25.



Harvard Style

Kangiwa, U. M., Oseni, . S. I., Ibrahim, . A., Na-allah, . M. & Labbo, . A. M. M. (2025) Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems. SJACR, 5 (1), 16-25.



Turabian Style

Kangiwa, Umar Muhammad, Samuel Isaac Oseni, Aisha Ibrahim, Mudassir Na-allah, and And Muntasir Musa Labbo. 2025. Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems. Science Journal of Advanced and Cognitive Research, 5 (1), 16-25.



Chicago Style

Kangiwa, Umar Muhammad, Samuel Isaac Oseni, Aisha Ibrahim, Mudassir Na-allah, and And Muntasir Musa Labbo. "Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems." Science Journal of Advanced and Cognitive Research 5 (2025), 16-25.



MLA (The Modern Language Association) Style

Kangiwa, Umar Muhammad, Samuel Isaac Oseni, Aisha Ibrahim, Mudassir Na-allah, and And Muntasir Musa Labbo. "Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems." Science Journal of Advanced and Cognitive Research 5.1 (2025), 16-25. Print.



APA (American Psychological Association) Style

Kangiwa, U. M., Oseni, . S. I., Ibrahim, . A., Na-allah, . M. & Labbo, . A. M. M. (2025) Performance Analysis of Peltier Module Thermoelectric Generator (TEG) for Solar Powered Cooling Systems. Science Journal of Advanced and Cognitive Research, 5 (1), 16-25.