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Sensitivity analysis of a wide-field telescope

机译:广角望远镜的灵敏度分析

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We are developing three ground-based wide-field telescopes. A wide-field Cassegrain telescope consists of two hyperbolic mirrors, aberration correctors and a field flattener for a 2-degree field of view. The diameters of the primary mirror and the secondary mirror are 500 mm and 200 mm, respectively. Corrective optics combined with four lenses, a filter and a window are also considered. For the imaging detection device, we use a charge coupled device (CCD) which has a 4096 × 4096 array with a 9-μm~2 pixel size. One of the requirements is that the image motion limit of the opto-mechanical structure be less than 1 pixel size of the CCD on the image plane. To meet this requirement, we carried out an optical design evaluation and a misalignment analysis. Line-of-sight sensitivity equations are obtained from the rigid-body rotation in three directions and the rigid-body translation in three directions. These equations express the image motions at the image plane in terms of the independent motions of the optical components. We conducted a response simulation to evaluate the finite element method models under static load conditions, and the result is represented by the static response function. We show that the wide-field telescope system is stiff and stable enough to be supported and operated during its operating time.
机译:我们正在开发三台地面广域望远镜。广角卡塞格伦望远镜由两个双曲镜,像差校正器和用于2度视场的场展平器组成。主镜和副镜的直径分别为500 mm和200 mm。还考虑了将校正光学系统与四个透镜,一个滤光镜和一个窗口组合在一起。对于成像检测设备,我们使用电荷耦合器件(CCD),该器件具有4096×4096阵列,像素大小为9μm〜2。要求之一是光机械结构的图像运动极限小于像平面上CCD的1个像素大小。为了满足这一要求,我们进行了光学设计评估和失准分析。从三个方向上的刚体旋转和三个方向上的刚体平移获得视线灵敏度方程。这些方程式根据光学组件的独立运动来表示图像平面上的图像运动。我们进行了响应仿真,以评估静态载荷条件下的有限元方法模型,结果由静态响应函数表示。我们证明了广角望远镜系统的刚度和稳定性足以在其运行期间得到支持和运行。

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