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Zernike modal compensation analysis for an adaptive optics system using direct-gradient wavefront reconstruction algorithm

机译:使用直接梯度波前重建算法的自适应光学系统的Zernike模态补偿分析

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Abstract: Power spectra function was used usually to describe the time domain characteristic of atmosphere disturbed wavefront. Power spectra reject function, which defines as the ratio of the power spectra function of the close-loop compensated wavefront to the open-loop disturbed wavefront, was used to describe the control effect of an adaptive optical system. In this paper the control effect of the Zernike wavefront modals for an adaptive optical system using direct-gradient wavefront reconstruction algorithm was analyzed by using the power spectra reject function of Zernike model coefficients. The dynamic models of Zernike modal compensation for the direct-gradient algorithm were established. The power spectra reject functions were calculated from the theoretic model and compared with those gotten from experimental data. It is shown that there is coupling between some Zernike modals while using the direct-gradient algorithm. Although the control bandwidth was affected slightly, the power spectra reject function of the coupled Zernike modals become worse at low frequency range, this causes the wavefront compensation effect descended to some degree. !10
机译:摘要:功率谱函数通常用于描述大气扰动波前的时域特征。功率谱抑制函数定义为自适应光学系统的控制效果,功率谱抑制函数定义为闭环补偿波阵面与开环干扰波阵面的功率谱函数之比。本文利用Zernike模型系数的功率谱抑制函数,分析了Zernike波前模态对采用直接梯度波前重构算法的自适应光学系统的控制效果。建立了直接梯度算法Zernike模态补偿的动力学模型。从理论模型计算出功率谱抑制函数,并将其与实验数据进行比较。结果表明,使用直接梯度算法时,某些Zernike模态之间存在耦合。尽管控制带宽受到轻微影响,但耦合的Zernike模态的功率谱抑制功能在低频范围内变差,这导致波前补偿效果有所下降。 !10

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