2020
DOI: 10.1371/journal.pone.0242316
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Optimal coordinated control of hybrid AC/VSC-HVDC system integrated with DFIG via cooperative beetle antennae search algorithm

Abstract: Nowadays, with the significant integration of various renewable energy, hybrid alternating current/ voltage source converter based high voltage direct current (AC/VSC-HVDC) system integrated with doubly-fed induction generator (DFIG) has achieved rapidly development in smart grid. A proper control system design for hybrid AC/VSC-HVDC system plays a very crucial role for a reliable and effective power transmission. Hence, this paper designs a novel cooperative beetle antenna search (CBAS) algorithm for optimal … Show more

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Cited by 5 publications
(3 citation statements)
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“…The whole searching can be divided into two stages, i.e., searching and detecting, while the weights during the two process are adaptively adjusted to avoid local optimums. Thus, a proper trade-off between local exploitation and global exploration can be achieved, upon which the optimization efficiency and accuracy can be greatly achieved, while more details of this algorithm can be referred to literature (Hao et al, 2020) for interested readers.…”
Section: Optimization Mechanismmentioning
confidence: 99%
See 1 more Smart Citation
“…The whole searching can be divided into two stages, i.e., searching and detecting, while the weights during the two process are adaptively adjusted to avoid local optimums. Thus, a proper trade-off between local exploitation and global exploration can be achieved, upon which the optimization efficiency and accuracy can be greatly achieved, while more details of this algorithm can be referred to literature (Hao et al, 2020) for interested readers.…”
Section: Optimization Mechanismmentioning
confidence: 99%
“…Hence, a powerful grouped BAS (GBAS) algorithm (Hao et al, 2020) is employed in this paper for PV cell parameter identification, whose contributions/novelties can be summarized as follows:…”
Section: Introductionmentioning
confidence: 99%
“…In most wind turbines, Double-Fed Induction Generator (DFIG) is utilized to convert the mechanical energy, acquired from the wind, into electrical energy due to its robust design and smooth operation. However, DFIG transfers the generated power to the load by using carbon brushes and slip rings which causes power loss and sparking due to continuous mechanical wear and tear in the mentioned devices [ 4 ]. Besides, it provides an inferior low voltage ride through (LVRT) capability as compared to Brushless DFIG which is a comparatively better alternative to the traditional DFIG [ 5 ].…”
Section: Introductionmentioning
confidence: 99%