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Algorithm development for online control of the ABL

机译:在线控制ABL的算法开发

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Abstract: In optics, Zernike orthogonal polynomials are used as a basis set for the expansion of wavefront phases. Due to the atmospheric turbulence-induced stochastic nature of the underlying process involved, the spatial-temporal correlation functions of the Zernike polynomial phase expansion coefficients must be evaluated if adaptive optics is to be employed. In this paper, these correlation functions are developed using a layered atmospheric model and calculations for the first few low-order Zernike modes are performed. Using these correlation functions, an underlying linear dynamical system is identified. Within an acceptable error bound, the correlation functions of this system are representative of the calculated correlation functions. This syste, in turn, provides the basis for the employment of advanced control and estimation concepts in an adaptive optics system that is being developed for the ABL. !12
机译:摘要:在光学中,Zernike正交多项式被用作扩展波前相位的基础。由于所涉及的基础过程是由大气湍流引起的随机性,因此如果要使用自适应光学器件,则必须评估Zernike多项式相膨胀系数的时空相关函数。在本文中,这些相关函数是使用分层大气模型开发的,并针对前几个低阶Zernike模式进行了计算。使用这些相关函数,可以确定潜在的线性动力学系统。在可接受的误差范围内,该系统的相关函数代表所计算的相关函数。反过来,该系统为在为ABL开发的自适应光学系统中采用高级控制和估计概念提供了基础。 !12

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