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Adaptive phase aberration correction based on imperialist competitive algorithm

机译:基于帝国主义竞争算法的自适应相位像差校正

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摘要

We investigate numerically the feasibility of phase aberration correction in a wavefront sensorless adaptive optical system, based on the imperialist competitive algorithm (ICA). Considering a 61-element deformable mirror (DM) and the Strehl ratio as the cost function of ICA, this algorithm is employed to search the optimum surface profile of DM for correcting the phase aberrations in a solid-state laser system. The correction results show that ICA is a powerful correction algorithm for static or slowly changing phase aberrations in optical systems, such as solid-state lasers. The correction capability and the convergence speed of this algorithm are compared with those of the genetic algorithm (GA) and stochastic parallel gradient descent (SPGD) algorithm. The results indicate that these algorithms have almost the same correction capability. Also, ICA and GA are almost the same in convergence speed and SPGD is the fastest of these algorithms.
机译:我们基于帝国主义竞争算法(ICA),从数字上研究了波前无传感器自适应光学系统中相差校正的可行性。考虑到61个元素的可变形镜(DM)和Strehl比作为ICA的成本函数,该算法用于搜索DM的最佳表面轮廓,以校正固态激光系统中的相差。校正结果表明,ICA是用于固态激光器等光学系统中静态或缓慢变化的相差的强大校正算法。将该算法的校正能力和收敛速度与遗传算法(GA)和随机并行梯度下降算法(SPGD)进行了比较。结果表明,这些算法具有几乎相同的校正能力。而且,ICA和GA的收敛速度几乎相同,而SPGD是这些算法中最快的。

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