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Active Mirror Support Using Pneumatic Actuators

机译:使用气动执行器的主动镜子支持

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The requirements for position, orientation and performance of the primary mirror active support system have been optimised through extensive FEA to minimise the wavefront slope error. The output of this optimisation has been a detailed performance specification which also takes into account telescope control and wind rejection requirements. The FE model has also been used to calculate the active force eigenmodes based on the static actuator patterns rather than approximations to the vibration modes. In addition significant development and prototyping has been undertaken in the actuator and defmer design including control. Interesting aspects of this development include use of flexures in the mirror definers in order to meet the stiffness requirements and control of a pneumatic astatic system. This paper describes the process of requirement optimisation for mirror performance and also the development and design of the support system.
机译:通过广泛的FEA优化了主镜子有效支持系统的位置,方向和性能的要求,以最小化波前斜率误差。该优化的输出一直是详细的性能规范,也考虑了望远镜控制和风蚀要求。 Fe模型还被用于基于静态致动器图案而不是近似振动模式来计算主动力的特征范围。此外,在执行器和DEFM设计包括控制的情况下,已经在显着的开发和原型设计。该开发的有趣方面包括在镜像定义中使用柔性,以满足气动性ASYTIC系统的刚度要求和控制。本文介绍了镜像性能的需求优化过程以及支持系统的开发和设计。

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