A novel design of fourth-order harmonic passive filters for total demand distortion minimization using crow spiral-based search algorithm

Nehad M. Khattab, Shady H.E. Abdel Aleem, Aboul'Fotouh F. El'Gharably, Tarek A. Boghdady, Rania A. Turky, Ziad M. Ali, Mahmoud M. Sayed

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

Mathematical design of a new fourth-order harmonic passive filter is presented and its optimal strategy is proposed with regards to various design scenarios. The considered objective function is total demand distortion minimization of the supply current. The crow spiral-based search algorithm (CSSA) is applied to solve the design problem formulated. This CSSA relies on a spiral search mechanism that improves the convergence and balances the exploration and exploitation abilities of the conventional crow search algorithm. Various power quality indices are taken into consideration like the individual and total harmonic voltage distortion values, individual and total current harmonic distortion values, active power loss, actual and displacement power factor percentages, and resonance damping capabilities. These indices were handled as non-linear constraints in the design. Additionally, a comparative investigation of the different damped filters is presented to assess the planned filter performance. The results obtained confirm the success of the filter design proposed in this paper.

Original languageEnglish
Article number101632
JournalAin Shams Engineering Journal
Volume13
Issue number3
DOIs
StatePublished - May 2022

Keywords

  • Crow spiral-based search algorithm
  • Damping filters
  • Harmonic distortion
  • Optimization
  • Passive filters
  • Power quality
  • Resonance
  • Voltage quality

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