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Characterization of the mechanical properties of the SOFIA secondary mirror mechanism in a multi-stage approach

机译:多阶段方法表征索非亚二级镜机构的力学性能

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The Stratospheric Observatory for Infrared Astronomy (SOFIA) uses its compact and highly integrated Secondary Mirror Mechanism (SMM) to switch between target positions on the sky in a square wave pattern. This chopping motion excites eigenmodes of the mechanism structure, which limit controller and observatory performance. We present the setup and results of experimental modal tests performed on different building stages of a test-bench model as well as on the original flight hardware. Test results were correlated to simulations employing a finite element model in order to identify excited mode shapes and contributing flexible components of the Secondary Mirror Mechanism. It was possible to isolate the motion of the compensation ring and its elastic mounts as the vibration mode inducing the main disturbance at about 300 Hz, which is currently the main mode shape limiting the performance of the chopping controller.
机译:用于红外天文学(SOFIA)的平流层天文​​台使用其紧凑且高度集成的二手镜机制(SMM)来在天空中的目标位置处以方波图案切换。这种斩波运动激发机制结构的特征模点,限制了控制器和天文台性能。我们介绍了在测试台模型的不同建筑阶段以及原始飞行硬件上执行的实验模态测试的设置和结果。测试结果与采用有限元模型的模拟相关,以识别激发模式形状和有助于次镜机构的柔性部件。可以将补偿环的运动和其弹性安装件隔离为振动模式,导致大约300 Hz的主干扰,这是当前限制斩波控制器性能的主模式形状。

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