Allocating Active Power Loss With Network Reconfiguration In Electrical Power Distribution Systems - Info and Reading Options
By International Journal of Power Electronics and Drive System (IJPEDS)
“Allocating Active Power Loss With Network Reconfiguration In Electrical Power Distribution Systems” Metadata:
- Title: ➤ Allocating Active Power Loss With Network Reconfiguration In Electrical Power Distribution Systems
- Author: ➤ International Journal of Power Electronics and Drive System (IJPEDS)
“Allocating Active Power Loss With Network Reconfiguration In Electrical Power Distribution Systems” Subjects and Themes:
- Subjects: Active power - Distribution network - Load flow - Loss allocation - Network reconfiguration
Edition Identifiers:
- Internet Archive ID: ➤ 10.11591ijpeds.v12.i1.pp130-138
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"Allocating Active Power Loss With Network Reconfiguration In Electrical Power Distribution Systems" Description:
The Internet Archive:
<span style="font-size:9pt;font-family:'Times New Roman', serif;">This paper presents a branch exchange (BE) based heuristic network reconfiguration technique where, the proposed bus classification strategy remodels dynamically as per the modified topology in order to provide a reconfigured network with minimum loss. Further, for fair allocation of the active power losses, it develops a new active power loss allocation (APLA) technique which eradicates the influence of cross-term analytically from loss formulation without any assumptions and approximations. The effectiveness of the proposed procedure has been investigated against other established methods using a 69-bus radial distribution network (RDN). The results of APLA achieved for original and reconfigured 69-bus RDN are found to be promising and judicious as regard to their load demands and geographical locations. The implementation of present reconfiguration procedure provides a total loss reduction benefit of 55.73% to the utility which highlights the significance of the developed procedure against other established techniques.</span>
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