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LUVOIR Primary Mirror Segment Alignment Control With Joint Laser Metrology and Segment Edge Sensing

机译:LUVOIR主镜分段对准控制,具有联合激光计量和分段边缘感应功能

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An approach is developed for the alignment and stability maintenance of the LUVOIR segmented primary mirror using a segment state estimation and wavefront control method based on a hybrid segment motion sensing architecture of laser truss metrology and segment edge sensors. Our current computer model was generated for LUVOIR Architecture Option A with a 15-meter aperture, 120-segment primary mirror. The methodology and simulation results will be presented and analyzed. JPL has a long history of technology development in laser metrology and edge sensors, including work in SIM [7], Keck and TMT [8], CCAT [3] and LUVOIR [1]. We will discuss our current efforts of LUVOIR laser metrology and edge-sensor models development, showing sensitivities of sensor measurements to various LUVOIR mirror eigen-modes, removing global modes and strengthening weak modes by performing joint (hybrid) laser-metrology and edge sensing. We will define and derive an important performance metric called wavefront error multiplier(WEM), and show that WEA/provides a simple link between sensor errors and the closed-loop (controlled) system wavefront error. We will show WEM values for several hybrid sensor configuration options studied. We will discuss an algorithm for mirror shape control and maintenance through segment state and wavefront estimations using joint edge-metrology sensing. We will compare simulated performance of mirror state estimation, wavefront estimation and wavefront control based on joint edge-metrology sensing among several sensor configurations, and show the impact of sensor error distributions on the segmented mirror alignment performance. Mirror shape control performance will also be evaluated in the context of imaging contrast between inner working angles (IWA) and outer working angles (OWA) of a LUVOIR coronagraph.
机译:基于激光桁架计量学和片段边缘传感器的混合片段运动传感架构,使用片段状态估计和波前控制方法,开发了一种用于LUVOIR片段主镜对准和稳定性维护的方法。我们当前的计算机模型是针对LUVOIR Architecture Option A(具有15米孔径,120段主镜)生成的。方法和仿真结果将被介绍和分析。 JPL在激光计量学和边缘传感器方面拥有悠久的技术开发历史,包括在SIM [7],Keck和TMT [8],CCAT [3]和LUVOIR [1]中工作。我们将讨论LUVOIR激光计量学和边缘传感器模型开发的当前工作,展示传感器测量对各种LUVOIR镜本征模式的敏感性,通过执行联合(混合)激光计量学和边缘感测来消除全局模式并增强弱模式。我们将定义并导出一个重要的性能指标,称为波前误差乘数(WEM),并表明WEA /提供了传感器误差与闭环(受控)系统波前误差之间的简单链接。我们将显示研究的几种混合传感器配置选项的WEM值。我们将讨论一种通过使用联合边缘计量学传感技术通过分段状态和波前估计进行镜面形状控制和维护的算法。我们将在几种传感器配置中比较基于联合边缘计量学传感的镜面状态估计,波前估计和波前控制的仿真性能,并显示传感器误差分布对分段镜对准性能的影响。镜子形状控制性能还将在LUVOIR日冕仪的内部工作角度(IWA)和外部工作角度(OWA)之间成像对比度的背景下进行评估。

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