Journal Article10.1016/J.IJEPES.2011.08.023
A combination of genetic algorithm and particle swarm optimization for optimal DG location and sizing in distribution systems
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TL;DR: A novel hybrid Genetic Algorithm (GA) / Particle Swarm Optimization (PSO) for solving the problem of optimal location and sizing of DG on distributed systems is presented to minimize network power loss and better voltage regulation in radial distribution systems.
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About: This article is published in International Journal of Electrical Power & Energy Systems. The article was published on 01 Jan 2012. The article focuses on the topics: Multi-swarm optimization & Particle swarm optimization.
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Citations
An Integrated Optimization approach to locate the D-STATCOM in Power Distribution system to reduce the power loss and Total Cost
TL;DR: This paper recommends a multi-objective optimization methodology for simultaneously perform the two objective functions such as resizing and optimal placement of Distributed Static Compensator (DSTATCOM) for reducing the power loss, total cost and enhancing the voltage profile.
Discrete optimal designs for distributed energy systems with nonconvex multiphase optimal power flow
Ishanki De Mel,Oleksiy V. Klymenko,Michael Short +2 more
TL;DR: Optimal DES design with nonconvex MOPF constraints for unbalanced low-voltage distribution networks. The algorithm finds discrete designs that are also feasible with respect to network constraints and improves upon existing solvers.
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A novel generation and capacitor integration technique for today's distribution systems
Okan Ozgonenel,Serap Karagol +1 more
TL;DR: A new calculation technique based on wavelet neural network (WNN), which is computationally effective compared to well-known techniques, is proposed and demonstrated to provide an efficient solution to the placement of both shunt capacitors and distributed generators for power distribution systems.
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Optimal Allocation of Multiple Distributed Generations in Radial Distribution Systems Using Levy Flight Distribution Algorithm
Ahmad Eid,Salah Kamel +1 more
- 22 Mar 2021
TL;DR: In this paper, a metaheuristic Levy Flight Distribution (LFD) optimization technique is implemented for optimal allocation of distributed generations (DG) in radial distribution systems (RDS).
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A Case Study of Optimization of a Solar Power Plant Sizing and Placement in Madhya Pradesh, India Using Multi-Objective Genetic Algorithm
TL;DR: Installing of solar power plants of required sizes is recommended at each district to meet their power demands locally as well as to supply the nearby districts when needed to reduce the reliance on grid for energy supply and help in making the system more decentralized and distributed.
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References
Distributed generation : a definition
TL;DR: In this article, the relevant issues and aims at providing a general definition for distributed power generation in competitive electricity markets are discussed, which can be defined as electric power generation within distribution networks or on the customer side of the network.
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Optimal sizing of capacitors placed on a radial distribution system
M.E. Baran,F.F. Wu +1 more
TL;DR: In this paper, a nonlinear programming problem for capacitors placed on a radial distribution system is formulated and a solution algorithm is developed to find the optimal size of capacitors so that the power losses will be minimized for a given load profile while considering the cost of the capacitors.
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Distributed generation : a definition
Thomas Ackermann,Goran Andersson,Lennart Söder +2 more
- 20 Apr 2001
TL;DR: Distributed generation (DG) is defined as electric power generation within distribution networks or on the customer side of the network.
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Electric Energy Systems Theory: An Introduction
Olle I. Elgerd,H. H. Happ +1 more
- 01 Apr 1972
TL;DR: In this second edition the introductory chapters have been strengthened to improve appeal to students, and new problems and material has been added on system protection.
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An analytical approach for dg allocation in primary distribution network
TL;DR: In this article, an analytical expression to calculate the optimal size and an effective methodology to identify the corresponding optimum location for DG placement for minimizing the total power losses in primary distribution systems is proposed.
1.2K