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Adaptive secondary mirrors for the Large Binocular Telescope

机译:大型双筒望远镜的自适应辅助镜

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The two adaptive secondary (AS) mirrors for LBT (LBT672) represent the new generation of the AS technology. Their design is based on the experience earned during the extensive tests of the previous generation unit (the MMT AS mirror). Both the mechanics and the electronics have been revised, improving the stability, reliability, maintenance and computational power of the system. The deformable mirror of each unit consists of a 1.6mm-thick Zerodur shell having a diameter of 911mm. The front surface is concave to match the Gregorian design of the telescope. Its figure is controlled by 672 electro-magnetic force actuators that are supported and cooled by an aluminum plate. The actuator forces are controlled using a combination of feed-forward and de-centralized dosed loop compensation, thanks to the feedback signals from the 672 co-located capacitive position sensors. The surface reference for the capacitive sensors is a 50mm-thick Zerodur shell faced to the back surface of the thin mirror and rigidly connected to the support plate of the actuators. Digital real-time control and unit monitoring is obtained using new custom-made on-board electronics based on new generation 32bit floating-point DSPs. The total computational power (121 Gflop/s) of the LBT672 units allows using the control electronics as wave-front computer without any reduction of the actuator control capability. We report the details of the new features introduced in the LBT672 design and the preliminary laboratory results obtained on a prototype used to test them. Finally the facility in Arcetri to test the final LBT672 units is presented.
机译:LBT(LBT672)的两个自适应辅助(AS)反射镜代表了新一代AS技术。他们的设计基于在上一代设备(MMT AS镜)的广泛测试中获得的经验。机械和电子设备均已进行了修订,从而提高了系统的稳定性,可靠性,维护性和计算能力。每个单元的可变形镜由1.6mm厚的Zerodur外壳组成,其直径为911mm。前表面是凹形的,以配合望远镜的格里高利度设计。它的形状由672个电磁致动器控制,该致动器由铝板支撑和冷却。得益于672个并置电容式位置传感器的反馈信号,执行器力的使用是前馈和分散式定量回路补偿的组合。电容式传感器的表面参考是50mm厚的Zerodur外壳,面向薄镜的后表面,并牢固地连接到执行器的支撑板。使用基于新一代32位浮点DSP的新型定制机载电子设备,可以获得数字实时控制和单元监视。 LBT672单元的总计算能力(121 Gflop / s)允许将控制电子设备用作波前计算机,而不会降低执行器的控制能力。我们报告了LBT672设计中引入的新功能的详细信息,以及用于测试它们的原型所获得的初步实验室结果。最后介绍了Arcetri的设备,以测试最终的LBT672装置。

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