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Mirror cell and active support system of the Mexican infrared opticaltelescope (TIM),

机译:墨西哥红外光学望远镜(TIM)的镜单元和主动支撑系统,

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Abstract: We present the conceptual design of the primary mirror support system of the 7.8 m Mexican Infrared-Optical Telescope. The primary mirror consists of 19 hexagonal off- axis parabolic Zerodur segments, which are carried by a tubular, lightweight and high stiffness cell structure. Each segment is actively supported by 19 pneumatic actuators, that cover the whole back area and provide a uniform force distribution. The array of actuators will be able to correct for high order aberrations. Each of these actuators contains a hydraulic damping system to provide a stiff coupling to the tubular cell to sustain the wind buffeting. The tip/tilt and piston control of each segment will be done through three axial, nanometer resolution position defining actuators. The lateral positioning of each segment is performed through 3 independent electro-mechanical actuators. With the combination of the whole set of actuators and differential positioning sensors, the phasing or coherent superposition of images of the segments, will be more feasible. The whole system will be cost effective, since several subsystems have already been tested on our 2.1 m telescope.!4
机译:摘要:我们介绍了7.8 m墨西哥红外光学望远镜的主镜支撑系统的概念设计。主镜由19个六角形离轴抛物线形Zerodur段组成,由管状,轻便和高刚度的单元结构承载。每个部分均由19个气动执行器主动支撑,这些执行器覆盖整个背部区域并提供均匀的力分布。执行器阵列将能够校正高阶像差。这些致动器中的每一个都包含液压阻尼系统,以提供与管状单元的刚性连接以维持风振。每个段的倾斜/倾斜和活塞控制将通过三个轴向,纳米分辨率的位置定义执行器来完成。每个段的横向定位是通过3个独立的机电执行器执行的。通过将整套执行器和差动定位传感器组合在一起,分段图像的定相或相干叠加将更加可行。整个系统将具有成本效益,因为已经在我们的2.1 m望远镜上测试了多个子系统。!4

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