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Dependence of the compensation error on the error of a sensor and corrector in an adaptive optics phase-conjugating system

机译:自适应光学相位共轭系统中补偿误差对传感器和校正器误差的依赖性

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摘要

In the framework of a statistical model of an adaptive optics system (AOS) of phase conjugation, three algorithms based on an integrated mathematical approach are considered, each of them intended for minimisation of one of the following characteristics: the sensor error (in the case of an ideal corrector), the corrector error (in the case of ideal measurements) and the compensation error (with regard to discreteness and measurement noises and to incompleteness of a system of response functions of the corrector actuators). Functional and statistical relationships between the algorithms are studied and a relation is derived to ensure calculation of the mean-square compensation error as a function of the errors of the sensor and corrector with an accuracy better than 10 %. Because in adjusting the AOS parameters, it is reasonable to proceed from the equality of the sensor and corrector errors, in the case the Hartmann sensor is used as a wavefront sensor, the required number of actuators in the absence of the noise component in the sensor error turns out 1.5 - 2.5 times less than the number of counts, and that difference grows with increasing measurement noise.
机译:在相位共轭的自适应光学系统(AOS)的统计模型的框架中,考虑了基于集成数学方法的三种算法,每种算法旨在最小化以下特征之一:传感器误差(在这种情况下理想校正器的误差),校正误差(在理想测量的情况下)和补偿误差(关于离散度和测量噪声以及校正器执行器响应功能系统的不完整性)。研究了算法之间的功能和统计关系,并推导了一个关系,以确保均方根补偿误差作为传感器和校正器误差的函数进行计算,其精度优于10%。因为在调整AOS参数时,从传感器和校正器误差的相等性出发是合理的,在将Hartmann传感器用作波前传感器的情况下,在传感器中没有噪声分量的情况下所需的执行器数量误差结果是计数值的1.5-2.5倍,并且这种差异随着测量噪声的增加而增大。

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