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Elliptically framed tip-tilt mirror optimized for stellar tracking

机译:椭圆镜框的倾斜镜针对恒星跟踪进行了优化

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We compare a design innovation of an elliptically framed tip-tilt optical tracker with an existing circularly framed tracker for the Navy Precision Optical Interferometer. The tracker stabilizes a 12.5 cm stellar beam on a target hundreds of meters away and requires an increase in operational frequency. We reduced mass and size by integrating an elliptical mirror as one of the rotating components, which eliminated a rotating frame. We used the same materials as the existing tracker; however, light-weighted both the aluminum frame and Zerodur~® mirror. We generated a computer-aided design model, converted it into a finite element model and performed modal analysis on two load cases. In load case 1, we tied down three points on the bottom surface of the tracker corresponding to the tie-down points of the comparison tracker. This reveals a first mode (lowest) frequency of 140 Hz, a factor of two over the baseline tracker's first mode frequency of 67 Hz. In load case 2, we constrained four additional points inboard of the corners of the tracker base, for a total of seven tie-downs, simulating a firmly bolted and secured mount. The first mode of vibration for this case is 211 Hz, an increase over load case 1 by a factor of 1.5 and more than three times the fundamental frequency of the existing tracker. We conclude that these geometrical changes with the additional tie-down bolts are a viable solution path forward to improve steering speed and recommend a continuation with this effort.
机译:我们将椭圆框架的倾斜式光学跟踪器的设计创新与现有的海军精密光学干涉仪的圆形框架的跟踪器进行了比较。跟踪器将12.5厘米的恒星光束稳定在数百米外的目标上,并需要增加工作频率。通过将椭圆镜集成为旋转组件之一,我们减少了质量和尺寸,从而消除了旋转框架。我们使用与现有跟踪器相同的材料;但是,铝框架和Zerodur〜®镜子的重量都轻。我们生成了一个计算机辅助设计模型,将其转换为有限元模型,并对两个工况进行了模态分析。在负载情况1中,我们将跟踪器底面上的三个点绑定到了比较跟踪器的绑定点上。这显示了140 Hz的第一模式(最低)频率,是基线跟踪器的67 Hz的第一模式频率的两倍。在负载情况2中,我们在跟踪器底座的角部内侧限制了四个附加点,总共进行了七个系紧操作,以模拟牢固地用螺栓固定的安装座。在这种情况下,第一振动模式为211 Hz,比负载情况1高出1.5倍,是现有跟踪器基本频率的三倍以上。我们得出的结论是,这些几何变化以及附加的系紧螺栓是提高转向速度的可行解决方案,并建议继续努力。

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