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Journal ArticleDOI

Reconfiguration of electric distribution networks for resistive line losses reduction

D. Shirmohammadi, +1 more
- 01 Apr 1989 - 
- Vol. 4, Iss: 2, pp 1492-1498
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TLDR
In this paper, the authors describe a heuristic method for the reconfiguration of distribution networks in order to reduce their resistive line losses under normal operating conditions, characterized by convergence to the optimum or a near-optimum solution and the independence of the final solution from the initial status of the network switches.
Abstract
The authors describe a heuristic method for the reconfiguration of distribution networks in order to reduce their resistive line losses under normal operating conditions. The proposed approach is characterized by convergence to the optimum or a near-optimum solution and the independence of the final solution from the initial status of the network switches. The methodology has been implemented in a production-grade computer program, DISTOP (Distribution Network Optimization). The compensation-based power flow technique developed at Pacific Gas and Electric Company for the efficient solution of weakly meshed distribution networks is an essential part of this loss reduction methodology. Important implementation aspects of the methodology and the results of its application to several realistic distribution networks are presented. Numerous test results have indicated that the proposed technique is computationally robust and efficient and, hence, suitable for both planning and operations studies. >

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Citations
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Fdr particle swarm algorithm for network reconfiguration of distribution systems

TL;DR: This paper proposes a novel particle swarm optimiza tion algorithm for reconfiguration of distribution system named Fitness Distance Ratio Particle Swarm Optimization Algorithm (FDR-PSOA) to reduce the power loss of the system.
Journal ArticleDOI

Distribution network reconfiguration validation with uncertain loads - network configuration determination and application

TL;DR: In this article, the authors proposed a heuristic modelling method of locating minimum voltages to help reduce losses on an 11 kV distribution network where the load is continually changing and the load on each distribution substation is not monitored.
Journal ArticleDOI

Reliability improvement of reconfigurable distribution system using GA and PSO

TL;DR: In this article, the authors presented an effective method for optimal reconfiguration of distribution system using genetic algorithm and particle swarm optimization, which identifies the optimal number and position of tie switch for serving maximum amount of load under all contingencies.
Proceedings ArticleDOI

A new technique in Distribution Network reconfiguration for loss reduction and optimum operation

TL;DR: The new algorithm for reconfiguration of distribution network has been tested on several test networks, including a four feeder distribution test network of Qom City, and results are presented which show improved performance of the new algorithm.
Journal ArticleDOI

Network Reconfiguration for an Electric Distribution System with Distributed Generators based on Symbiotic Organisms Search

TL;DR: The comparison results with particle swarm optimization and other previous methods show that the proposed SOS can be a promising technique for the problem of electric network reconfiguration.
References
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Journal ArticleDOI

Distribution feeder reconfiguration for loss reduction

TL;DR: In this paper, a scheme that utilizes feeder reconfiguration as a planning and/or real-time control tool to restructure the primary feeder for loss reduction is presented.
Journal ArticleDOI

A compensation-based power flow method for weakly meshed distribution and transmission networks

TL;DR: In this article, a power flow method is described for solving weakly meshed distribution and transmission networks, using a multiport compensation technique and basic formations of Kirchoff's laws.
Journal ArticleDOI

Normal State Optimal Load Allocation in Distribution Systems

TL;DR: In this article, the authors presented an algorithm and presented computer results for minimizing the losses in a loop distribution system based on the remote operation of sectionalizing switches on feeders interconnecting different substations.
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