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A modified genetic algorithm for precise determination the geometrical orbital elements of binary stars

机译:一种改进的遗传算法,用于精确确定双星的几何轨道元素

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The paper presents a modified genetic algorithm called adapted genetic algorithm with adjusting population size (AGA-POP) for precise determination the orbital elements of binary stars. The proposed approach is a simple, robust way that can be considered to be a new member in the class of self organizing genetic algorithms. The proposed AGA-POP is applied on the star eta Bootis of MK type GO IV to find a set of optimal orbital elements. This leads to obtain the best fitting of Keplerian and phase curves. The modified method is compared with other different methods such as standard genetic algorithm, adapted genetic algorithm (AGA) and least square methods. Simulation results show the effectiveness of using AGA-POP compared with other different classic genetic algorithms in reducing the computation time. Also, better performances have been achieved when using the proposed technique. (C) 2008 Elsevier B.V. All rights reserved.
机译:本文提出了一种经过修改的遗传算法,称为“遗传算法”,它具有调整种群大小(AGA-POP),用于精确确定双星的轨道元素。所提出的方法是一种简单,可靠的方法,可以认为它是自组织遗传算法类别的新成员。拟议中的AGA-POP应用于MK型GO IV的恒星埃塔布蒂斯,以找到一组最佳轨道元素。这导致获得开普勒曲线和相位曲线的最佳拟合。将修改后的方法与其他不同方法进行比较,例如标准遗传算法,自适应遗传算法(AGA)和最小二乘法。仿真结果表明,与其他经典遗传算法相比,使用AGA-POP可以减少计算时间。而且,使用所提出的技术时,已经获得了更好的性能。 (C)2008 Elsevier B.V.保留所有权利。

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