2015
DOI: 10.1109/tpwrs.2014.2331364
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Optimal Placement and Sizing of Distributed Generators in Unbalanced Distribution Systems Using Supervised Big Bang-Big Crunch Method

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Cited by 81 publications
(49 citation statements)
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“…Impact of DG penetration on system losses and voltage deviation for load increment is increasing studied [10] For optimal placement and sizing of distributed generators on balanced/ unbalanced distribution networks, big bang big crunch optimization algorithm proposed by Hegazy Y.G.et al [11], whereas a particle swarm optimization-based methodology for optimal sizing and placement of distributed generation is proposed for unbalanced reactive power support by Reddy et al [12].Optimal placement and the sizing problem of the voltage controlled distributed generators is solved using big bang-big crunch method [13]. Dong-Jun Won et al, determined the optimal number of power quality monitors and their locations [14].…”
Section: Related Workmentioning
confidence: 99%
“…Impact of DG penetration on system losses and voltage deviation for load increment is increasing studied [10] For optimal placement and sizing of distributed generators on balanced/ unbalanced distribution networks, big bang big crunch optimization algorithm proposed by Hegazy Y.G.et al [11], whereas a particle swarm optimization-based methodology for optimal sizing and placement of distributed generation is proposed for unbalanced reactive power support by Reddy et al [12].Optimal placement and the sizing problem of the voltage controlled distributed generators is solved using big bang-big crunch method [13]. Dong-Jun Won et al, determined the optimal number of power quality monitors and their locations [14].…”
Section: Related Workmentioning
confidence: 99%
“…The multi-objective formulation is converted to a single-objective function using the weighted sum of individual objectives [16] (active power loss, reactive power loss, voltage profile and reserve capacity).…”
Section: Introductionmentioning
confidence: 99%
“…Heuristic methods have been also applied, where a genetic algorithm (GA) is applied using chance constrained programming (CCP) [2], tabu-search (TS) [12], particle swarm optimization (PSO) [17], and big bang-big crunch (BB-BC) in [16]. Probabilistic optimal power flow (POPF) models are used in [7,[21][22][23][24].…”
Section: Introductionmentioning
confidence: 99%
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“…Electrical energy producers began to use small to medium-scale generators that were placed directly in the load center known as distributed generation (DG) [1]. DG is considered as the answer of various limitations on conventional systems, so it is not surprising that DG has reached about 20%-30% of total energy production [2][3][4].Basically, DG is used to improve network reliability, security and power quality to customers [5]. However, with large-scale multi-type DG penetration and improper planning, the network system will face some serious problems [6][7][8] [15].…”
mentioning
confidence: 99%