Affiliation:
1. Department of Electrical and Electronics Engineering, Ariel University, Ariel 40700, Israel
Abstract
Modern low-voltage distribution lines, especially those linked with renewable energy sources, face technical hurdles like unaccounted and illegal electricity use, increased power losses, voltage control issues, and overheating. Tackling these challenges effectively requires continuously monitoring power flows and identifying problematic network spots. This study introduces a method involving ongoing energy flow monitoring from distribution transformers and other sources to end-users through auxiliary facilities. The algorithm seamlessly integrates with consumers’ existing smart power meters and supporting infrastructure, eliminating the need for extra equipment or data. Deployed in several distribution networks totaling about 40 GWh/year over two years, this diagnostic system showed promising results. It notably cut total power consumption by around 6% by detecting and mitigating illegal energy waste and addressing technical issues. Additionally, it reduced technical personnel involvement in operational tasks by approximately twentyfold, significantly enhancing network profitability overall.
Reference37 articles.
1. Blockchain-Based Malicious Behaviour Management Scheme for Smart Grids;Xu;Smart Cities,2023
2. Wood, A.J., Wollenberg, B.F., and Sheblé, G.B. (2013). Power Generation, Operation, and Control, John Wiley & Sons.
3. Farmanbar, M., Parham, K., Arild, Ø., and Rong, C. (2019). A widespread review of smart grids towards smart cities. Energies, 12.
4. Smart grids and smart technologies in relation to photovoltaics, storage systems, buildings and the environment;Lamnatou;Renew. Energy,2022
5. Impact of household electricity theft and unaffordability on electricity security: A case of Uganda;Wabukala;Energy Policy,2023