Network Reconfiguration Framework for CO2 Emission Reduction and Line Loss Minimization in Distribution Networks Using Swarm Optimization Algorithms
Author:
Affiliation:
1. Department of Industrial Education and Technology, National Changhua University of Education, Bao-Shan Campus, No. 2, Shi-Da Road, Changhua 500, Taiwan
2. National Atomic Research Institute, Taoyuan 325, Taiwan
Abstract
Funder
Institute of Nuclear Energy Research of Taiwan
Publisher
MDPI AG
Link
https://www.mdpi.com/2071-1050/16/4/1493/pdf
Reference31 articles.
1. Feasibility study of upgrading primary feeders from radial and open-loop to normally closed-loop arrangement;Chen;IEEE Trans. Power Syst.,2004
2. Yan, X., and Zhang, Q. (2023). Research on Combination of Distributed Generation Placement and Dynamic Distribution Network Reconfiguration Based on MIBWOA. Sustainability, 15.
3. Alanazi, A., and Alanazi, T.I. (2023). Multi-Objective Framework for Optimal Placement of Distributed Generations and Switches in Reconfigurable Distribution Networks: An Improved Particle Swarm Optimization Approach. Sustainability, 15.
4. Kandasamy, M., Thangavel, R., Arumugam, T., Jayaram, J., Kim, W.-W., and Geem, Z.W. (2022). Performance Enhancement of Radial Power Distribution Networks Using Network Reconfiguration and Optimal Planning of Solar Photovoltaic-Based Distributed Generation and Shunt Capacitors. Sustainability, 14.
5. Gallego Pareja, L.A., López-Lezama, J.M., and Gómez Carmona, O. (2023). Optimal Feeder Reconfiguration and Placement of Voltage Regulators in Electrical Distribution Networks Using a Linear Mathematical Model. Sustainability, 15.
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