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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Modeling and simulating the thermoelastic deformation of mirrors using transient multilayer models
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Modeling and simulating the thermoelastic deformation of mirrors using transient multilayer models

机译:使用瞬态多层模型建模和模拟镜子热弹性变形

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摘要

We present a dynamic model with distributed parameters for the thermoelastic transfer behavior in multilayer structures, which are motivated by optically addressed deformable mirrors (OADMs). These are encountered in adaptive optics and utilized for correcting wavefront disturbances of high-power radiation. Our modeling approach is based on a continuum-mechanic multilayer model which distinguishes between an addressing heat load - the control input - and a boundary disturbance evoked by the high-power primary radiation. Thus, the model without control action can be used for passive mirrors as well. The relevant transient effects are investigated with physically motivated assumptions, the plate-like geometry, and parametric rheological analogue models. Furthermore, an efficient simulation scheme is established using Fourier methods in conjunction with model order reduction. The model's accuracy and the validity of all assumptions is demonstrated by means of an experimental setup. The parametric model is a first step towards feedback and feedforward control designs and disturbance compensation algorithms for OADMs.
机译:我们介绍了一种具有用于多层结构中的热弹性动态的分布参数的动态模型,其通过光学解决的可变形镜(OADMS)激励。这些在自适应光学中遇到并用于校正高功率辐射的波前扰动。我们的建模方法基于连续的 - 机械多层模型,其区分了寻址热负荷 - 控制输入 - 高功率初级辐射引起的边界干扰。因此,没有控制动作的模型也可以用于被动镜。用身体动机的假设,板状几何和参数流变模拟模型来研究相关的瞬态效果。此外,使用傅立叶方法与模型顺序减少建立有效的仿真方案。模型的准确性和所有假设的有效性通过实验设置来证明。参数模型是探讨OADMS的反馈和前馈控制设计和干扰补偿算法的第一步。

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