首页> 外文会议>Conference on Radio Telescopes 27-30 March 2000 Munich, Germany >Verification of the active deformation compensation system of the LMT/GMT by end-to-end simulations
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Verification of the active deformation compensation system of the LMT/GMT by end-to-end simulations

机译:通过端到端仿真验证LMT / GMT的主动变形补偿系统

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The 50 m MLT/GTM is exposed to the climatic conditions at 4,600 m height on Cerro La Negra, Mexcio. For operating the telescope to the challenging requirements of its millimeter objective, an active approach for monitoring and compensating the structural deformations (Flexible Body Compensation FBC) is necessary. This system includes temperature sensors and strain gages for identifying large scale deformations of the reflector backup structure, a laser system for measuring the subreflector position, and an inclinometer system for measuring he deformations of the alidade. For compensating the monitored defrmations, the telescope is equipped with additional actuators for active control of the main reflector surface and the subreflector position. The paper describes the verification of the active deformation system by finite element calculations and MATLAB simulations of the surface accuracy and the pointing including the servo under the operational wind and thermal conditions.
机译:在Mexcio的Cerro La Negra上,50 m MLT / GTM暴露在4600 m高的气候条件下。为了使望远镜满足其毫米物镜的挑战性要求,必须有一种主动的方法来监视和补偿结构变形(柔性机身补偿FBC)。该系统包括温度传感器和应变计,用于识别反射镜备用结构的大规模变形;激光系统,用于测量副反射镜的位置;倾角仪系统,用于测量倾斜仪的变形。为了补偿所监视的变形,望远镜配备了附加的执行器,用于主动控制主反射镜表面和副反射镜位置。本文介绍了通过有限元计算和MATLAB仿真来对主动变形系统进行的验证,包括在运行风和热条件下的表面精度和指向(包括伺服)的指向。

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