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A Hybrid Black-Winged Kite Algorithm with PSO and Differential Mutation for Superior Global Optimization and

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This study introduces BKAPI, an enhanced hybrid algorithm combining Black-Winged Kite Algorithm (BKA) with Particle Swarm Optimization (PSO) and Differential Evolution (DE) to solve high-dimensional optimization problems effectively. BKAPI improves convergence speed and accuracy, overcoming premature convergence issues in complex scenarios.

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Area of Science:

  • Computational Intelligence
  • Optimization Algorithms
  • Heuristic Search

Background:

  • The Black-Winged Kite Algorithm (BKA) faces premature convergence in high-dimensional optimization.
  • Existing algorithms often struggle with balancing exploration and exploitation.
  • Parameter sensitivity and insufficient local search limit BKA's effectiveness.

Purpose of the Study:

  • To propose an enhanced hybrid algorithm (BKAPI) to address BKA's limitations.
  • To improve convergence speed and computational accuracy in high-dimensional optimization.
  • To achieve a robust balance between exploration and exploitation.

Main Methods:

  • Hybridization of Black-Winged Kite Algorithm (BKA) with Particle Swarm Optimization (PSO) and Differential Evolution (DE).
  • Integration of PSO for local exploitation and DE for population diversity maintenance.
  • Dynamic global exploration via BKA's strategies and local refinement via PSO's velocity-based search.

Main Results:

  • BKAPI demonstrates a significant improvement in convergence speed and computational accuracy.
  • The enhanced algorithm effectively overcomes premature convergence and parameter sensitivity.
  • Experimental validation using CEC 2017 and CEC 2022 benchmark functions shows superiority over seven other algorithms.

Conclusions:

  • The proposed BKAPI offers a robust solution for high-dimensional optimization problems.
  • BKAPI exhibits strong performance and broad applicability in engineering design.
  • The integrated strategy proves effective and versatile for complex optimization tasks.