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A Novel Quantum-Behaved Bat Algorithm with Mean Best Position Directed for Numerical Optimization

机译:一种新颖的均值最佳位置的量子行为蝙蝠算法用于数值优化

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摘要

This paper proposes a novel quantum-behaved bat algorithm with the direction of mean best position (QMBA). In QMBA, the position of each bat is mainly updated by the current optimal solution in the early stage of searching and in the late search it also depends on the mean best position which can enhance the convergence speed of the algorithm. During the process of searching, quantum behavior of bats is introduced which is beneficial to jump out of local optimal solution and make the quantum-behaved bats not easily fall into local optimal solution, and it has better ability to adapt complex environment. Meanwhile, QMBA makes good use of statistical information of best position which bats had experienced to generate better quality solutions. This approach not only inherits the characteristic of quick convergence, simplicity, and easy implementation of original bat algorithm, but also increases the diversity of population and improves the accuracy of solution. Twenty-four benchmark test functions are tested and compared with other variant bat algorithms for numerical optimization the simulation results show that this approach is simple and efficient and can achieve a more accurate solution.
机译:提出了一种具有均值最佳位置方向(QMBA)的量子行为蝙蝠算法。在QMBA中,每个蝙蝠的位置主要由搜索的早期阶段的当前最佳解决方案更新,而在搜索的后期,它也取决于平均最佳位置,这可以提高算法的收敛速度。在搜索过程中,引入了蝙蝠的量子行为,有利于跳出局部最优解,使行为良好的量子蝙蝠不易陷入局部最优解,具有更好的适应复杂环境的能力。同时,QMBA很好地利用了蝙蝠经历过的最佳位置的统计信息来生成质量更高的解决方案。该方法不仅继承了原始蝙蝠算法收敛快,简单易实现的特点,而且增加了种群的多样性,提高了求解的准确性。测试了二十四种基准测试功能,并将其与其他蝙蝠算法进行了数值优化比较,仿真结果表明该方法简单有效,可以实现更精确的解决方案。

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