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Measurement accuracy in control of segmented-mirror telescopes

机译:分段镜望远镜控制中的测量精度

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Design concepts for future large optical telescopes have highly segmented primary mirrors, with the out-of-plane degrees of freedom actively controlled. We estimate the contribution to errors in controlling the primary mirror that results from sensor noise and, in particular, compare mechanical measurements of relative segment motion with optical wave-front information. Data from the Keck telescopes are used to obtain realistic estimates of the achievable noise due to mechanical sensors. On the basis of these estimates, mechanical sensors will be more accurate than wave-front information for any of the telescope design concepts currently under consideration, and therefore supplemental wave-front sensors are not required for real-time figure control. Furthermore, control system errors due to sensor noise will not significantly degrade either seeing-limited or diffraction-limited observations.
机译:未来大型光学望远镜的设计概念具有高度细分的主镜,可主动控制平面外自由度。我们估计由传感器噪声导致的主镜控制误差的贡献,尤其是将相对段运动的机械测量结果与光波前信息进行比较。来自Keck望远镜的数据用于获得对机械传感器可达到的噪声的真实估计。根据这些估计,对于目前正在考虑的任何望远镜设计概念,机械传感器将比波前信息更准确,因此实时图形控制不需要补充波前传感器。此外,由于传感器噪声引起的控制系统错误不会显着降低观察受限或衍射受限的观测结果。

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