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Atom stabilization algorithm and its real life applications

机译:原子稳定算法及其实际应用

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摘要

This work introduces an optimization algorithm based on Bohr's atomic model. Microcosm of physics and chemistry such as excitation and de-excitation of electrons in atom and bond formation phenomenon are the key mechanism of this algorithm. Performance of proposed algorithm is analyzed with six standard benchmark functions. Results are compared with three competitor algorithms. Results indicate competency of the proposed algorithm in generating good quality solutions with high convergence rate. Proposed algorithm is also applied to real life applications and examined comparative performance with respect to existing implementation of optimization techniques.
机译:这项工作介绍了基于Bohr原子模型的优化算法。该算法的关键机制是物理和化学的缩影,例如原子中电子的激发和灭活以及键形成现象。通过六个标准基准函数分析了所提出算法的性能。将结果与三种竞争对手的算法进行比较。结果表明,该算法具有较高的收敛速度,可以生成高质量的解决方案。拟议的算法也适用于现实生活中的应用程序,并针对优化技术的现有实现检查了比较性能。

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