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Novel adaptive spiral dynamics algorithms for global optimization

机译:用于全局优化的新型自适应螺旋动态算法

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摘要

This paper presents adaptive versions of spiral dynamics algorithm (SDA) referred to as adaptive SDA (ASDA). SDA is known as fast computing algorithm due to its simplicty in the structure and it has stable convergence response when approaching the optimum point in the search space. However, the performance of SDA is still poor due to incorporation of single radius value during the whole search process. In ASDA, the spiral radius is made dynamic by employing novel mathematical equations and incorporating non-mathematical fuzzy logic approach establishing the relationship between fitness value and spiral radius. This results in better performences in terms of convergence speed, accuracy, and total computing time while retaining the simple structure of SDA. Several uni-modal and multi-modal benchmark functions are employed to test the algorithm in finding the global optimum point. The results show that ASDA outperforms SDA in all test functions.
机译:本文介绍了螺旋动力学算法(SDA)的自适应版本,称为自适应SDA(ASDA)。 SDA由于其结构简单而被称为快速计算算法,并且在接近搜索空间中的最佳点时具有稳定的收敛响应。但是,由于在整个搜索过程中合并了单个半径值,因此SDA的性能仍然很差。在ASDA中,通过使用新颖的数学方程并结合非数学模糊逻辑方法来建立适合度值和螺旋半径之间的关系,从而使螺旋半径变得动态。这样就可以在收敛速度,准确性和总计算时间方面实现更好的性能,同时保留SDA的简单结构。几个单模态和多模态基准函数用于测试算法,以找到全局最优点。结果表明,在所有测试功能上,ASDA均优于SDA。

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