Integrated Optimization of Nuclear Energy Transmission Systems to Minimize Grid and Data Center Power Losses
Keywords:
Nuclear energy systems; Power loss optimization; Smart grids; Data centers; Energy efficiencyAbstract
The rapid expansion of digital infrastructure, particularly artificial intelligence-driven data centers, has intensified global electricity demand and increased pressure on existing power systems. Although nuclear energy provides reliable low-carbon baseload generation, significant inefficiencies persist across transmission networks, distribution systems, and end-use facilities, leading to substantial technical losses and reduced system performance. This study develops an integrated optimization framework for nuclear energy transmission systems aimed at minimizing power losses across the entire electrical power chain while enhancing grid efficiency, data center performance, and overall system sustainability. The framework integrates optimized transmission routing, intelligent grid management, energy storage systems, and data center load optimization within a unified simulation environment. A multi-scenario analysis was conducted to evaluate system performance under baseline, partially optimized, and fully integrated configurations. Key performance indicators included transmission and distribution losses, annual energy delivery, Power Usage Effectiveness (PUE), carbon emissions, operating costs, and grid reliability. Results demonstrate that total technical losses were reduced from 13.18% to 6.15%, while annual energy delivery increased from 17,523 GWh to 18,943 GWh under the fully integrated system. Data center efficiency improved significantly, with PUE decreasing from 1.82 to 1.34. Furthermore, carbon emissions were reduced by 38.19%, operating costs declined by approximately USD 414 million annually, and grid reliability improved to 99.4%. Sensitivity analysis revealed that transmission distance and artificial intelligence-based control accuracy are the most critical factors influencing system performance. Overall, the findings confirm that integrated optimization of nuclear energy transmission systems offers a highly effective strategy for reducing power losses, improving energy utilization, and enhancing the sustainability of energy-intensive digital infrastructur
Downloads
Published
Issue
Section
License
Copyright (c) 2026 Anthony I. G. Ekedegwa (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors retain copyright and grant the journal the right of first publication. Articles published in this journal are licensed under a Creative Commons Attribution 4.0 International License (CC BY 4.0), permitting unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
How to Cite
Similar Articles
- Samira Sanni, A Review on Sustainable Procurement in the Age of AI: Leveraging Intelligent Systems to Advance U.S. Climate and Economic Resilience , Applied Science, Computing, and Energy: Vol. 3 No. 3 (2025): Volume 3, Issue 3
- Olatunde Ayeomoni, Intelligent Cyber Defense: Leveraging AI and Machine Learning Algorithms for Cloud Security , Applied Science, Computing, and Energy: Vol. 1 No. 1 (2024): VOLUME 1 ISSUE 1
- Bolanle Akin-Taiwo, Machine Learning in Special and Inclusive Education for Children with Disabilities , Applied Science, Computing, and Energy: Vol. 1 No. 1 (2024): VOLUME 1 ISSUE 1
- Amos Abba, Amarachi Nelly Charles, Algorithmic Newsrooms: Integrating Artificial Intelligence and Machine Learning into Modern Journalism , Applied Science, Computing, and Energy: Vol. 3 No. 3 (2025): Volume 3, Issue 3
- Moses Oluwasegun Odewale, Moses Olagoke Odejobi, Olanrewaju Oluwaseun Ajayi, AI-Driven Self-Optimizing Framework for Real-Time Wireless Network Performance Enhancement , Applied Science, Computing, and Energy: Vol. 1 No. 1 (2024): VOLUME 1 ISSUE 1
- Nnabuk Okon Eddy, Ifeanyi Adolphus Ucheana, Eddy, N. O. & Uchenna, I. A Financial Strategies for Equipment Acquisition, and Sustenance of Scientific Laboratories: A Case Study of the Nuclear Science Laboratory at the University of Nigeria , Applied Science, Computing, and Energy: Vol. 2 No. 1 (2025): VOLUME 2 ISSUE 1
- Ifiok Dominic Uffia, Ofonimeh Emmanuel Udofia , Iniobong Bruno Nsien,, Idem Udo Uko, Christiana Samuel Udofia, Ecological Impacts of Anthropogenic Activities on Biodiversity and Ecosystem Functioning in Changing Climates , Applied Science, Computing, and Energy: Vol. 2 No. 2 (2025): VOLUME 2 ISSUE 2
- Sarah Ngusoon, Sarah Ngusoon Agwaza, Integrating Artificial Intelligence in Estate Management: Innovations, Challenges, and Future Prospects , Applied Science, Computing, and Energy: Vol. 1 No. 1 (2024): VOLUME 1 ISSUE 1
- Edikan Nnabuk, Enhancing Office Management Efficiency through Artificial Intelligence and ICT Innovations , Applied Science, Computing, and Energy: Vol. 1 No. 1 (2024): VOLUME 1 ISSUE 1
- Hafsat Abubakar Garba, Olumuyiwa Oyekunle Akintola, Jamila Ibrahim Shekarau, Abubakar Habib Idris, Warji Muhammad Ibrahim, Hannat Akanang, John Dedah , Musa Muhammad, Buhari Labaran, Dahiru Mohammed, Agada Emmanuel Obotu, Muhammad Mukhtar, Yasser Sabo Takko, Physico-Chemical and Fuel Performance Assessment of Biodiesel Produced from Hevea Brasiliensis Rubber Seed Oil via Catalytic Transesterification , Applied Science, Computing, and Energy: Vol. 4 No. 2 (2026): Volume 4 Issue 2
You may also start an advanced similarity search for this article.