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Adaptive secondary mirror for the 6.5-m conversion of the Multiple Mirror Telescope: first laboratory testing results

机译:适用于多镜望远镜6.5米转换的自适应辅助镜:首次实验室测试结果

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Abstract: We present the first results of test performed on a reduced size adaptive secondary prototype named P36. The full size unit, named MMT336, is ready to be assembled and it is planned to install it at the 6.5m conversion of the Multiple Mirror Telescope by the end of this year. The design of the final unit consists of: a convex thin deformable mirror whose figure is controlled by 336 electro-magnetic force actuators, a thick reference shell and a third aluminum shell used for actuator support and cooling. The force actuator response function is adjusted using both open and closed loop compensation to obtain an equivalent position actuator thanks to nearly co-located capacitive position sensors. The digital real-time control and the unit monitoring is done using custom-made electronics based on DSPs. The preliminary dynamical test aimed at identifying the P36 mirror response function to obtain a proper dynamics compensation were successful. In fact two main results have been obtained: 1) an accurate identification of the feedforward matrix used to control the mirror 2) settling time of approximately 0.5 ms, well within the specifications. We also complement these lab results with results obtained from simulations of the full size mirror dynamics. !5
机译:摘要:我们介绍了在名为P36的尺寸减小的自适应辅助原型上执行的第一个测试结果。名为MMT336的全尺寸装置已准备好进行组装,并计划在今年年底之前将其安装在6.5m转换的多镜望远镜上。最终单元的设计包括:凸面薄的可变形反射镜,其形状由336个电磁力执行器控制,厚的参考壳体和用于执行器支撑和冷却的第三铝壳。力致动器的响应功能可以通过开环和闭环补偿进行调整,从而获得等效的位置致动器,这要归功于几乎位于同一位置的电容位置传感器。使用基于DSP的定制电子设备可以完成数字实时控制和单元监控。旨在确定P36镜面响应功能以获得适当的动态补偿的初步动态测试是成功的。实际上,已经获得了两个主要结果:1)精确识别用于控制反射镜的前馈矩阵2)稳定时间约为0.5 ms,完全在规格范围内。我们还将这些实验结果与全尺寸镜面动力学仿真得到的结果相补充。 !5

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