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ISSN: 2582-8266 (Online)  || UGC Compliant Journal || Google Indexed || Impact Factor: 9.48 || Crossref DOI

Fast Publication within 2 days || Low Article Processing charges || Peer reviewed and Referred Journal

Research and review articles are invited for publication in Volume 18, Issue 3 (March 2026).... Submit articles

Energy efficiency improvement of industrial induction motor systems through integrated electrical and mechanical loss optimization

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  • Energy efficiency improvement of industrial induction motor systems through integrated electrical and mechanical loss optimization

Ibekwe Arinze Ignatius 1, * and Callistus Simeon 2

1 Department of Electrical Engineering, Faculty of Engineering, Nnamdi Azikiwe University, Awka, Nigeria.
2 Department of Mechanical Engineering, Faculty of Engineering, Chukwuemeka Odumegwu Ojukwu University, Uli,  Nigeria.
 

Research Article

 

World Journal of Advanced Engineering Technology and Sciences, 2026, 18(03), 566-574

Article DOI: 10.30574/wjaets.2026.18.3.0177

DOI url: https://doi.org/10.30574/wjaets.2026.18.3.0177

Received on 16 February 2026; revised on 27 March 2026; accepted on 30 March 2026

Industrial induction motor systems account for a significant portion of global electricity consumption, making their efficiency improvement a critical focus for energy optimization. This study investigates the enhancement of energy efficiency in industrial induction motor systems through an integrated approach that combines both electrical and mechanical loss optimization. A comprehensive loss model was developed to analyze key loss components, including stator and rotor copper losses, core losses, mechanical losses, and stray load losses. The methodology involved analytical modeling and comparative evaluation of baseline and optimized motor performance. Results revealed that electrical losses constitute the largest portion of total losses, while mechanical losses, though often overlooked, present substantial opportunities for efficiency improvement. By applying integrated optimization strategies such as improved current control, reduction of magnetic losses, proper shaft alignment, and enhanced bearing maintenance the total system losses were reduced by approximately 19.6%, leading to an efficiency improvement of about 4.8%. The findings demonstrate that a system-level optimization approach provides more effective and sustainable efficiency gains compared to isolated electrical improvements. This study offers practical insights for industries seeking cost-effective methods to reduce energy consumption, improve system performance, and extend equipment lifespan. The proposed framework is particularly relevant for industrial environments where full system replacement is not economically feasible, emphasizing the value of incremental and integrated optimization strategies.

Induction Motor; Energy Efficiency; Loss Optimization; Electrical Losses; Mechanical Losses; Motor Systems; Industrial Energy Management; Efficiency Improvement; Power Loss Reduction; Variable Speed Drives

https://wjaets.com/sites/default/files/fulltext_pdf/WJAETS-2026-0177.pdf

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Ibekwe Arinze Ignatius and Callistus Simeon. Energy efficiency improvement of industrial induction motor systems through integrated electrical and mechanical loss optimization. World Journal of Advanced Engineering Technology and Sciences, 2026, 18(03), 566-574. Article DOI: https://doi.org/10.30574/wjaets.2026.18.3.0177

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