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Tilt angular correlation and tilt sensing techniques with a laser guide star

机译:激光制导星的倾斜角相关和倾斜感测技术

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Abstract: The two techniques for sensing full aperture tilt with a laser guide star (LGS) are described. The first technique exploits a full aperture beam transmitting through the main optical train. The two auxiliary telescopes, which are separated from the transmitter in transverse directions, are used to measure a laser beacon image motion. The contribution of the down propagation path to the tilt that is measured with an auxiliary telescope is eliminated by averaging LGS image over a laser beacon angular extent. Such averaging requires FOV of the receiver which greatly exceeds the tilt angular correlation scale. A second method exploits a small aperture beam transmitted from behind a portion of a primary mirror of the main telescope. A laser beacon image motion is measured simultaneously with the main and auxiliary telescopes. A full aperture tilt is determined by subtracting the tilt measured with the main telescope from that measured with an auxiliary one. This method does not require transmitting laser irradiance through the main optical train, and it might be used for the mesospheric sodium layer. A scheme for measuring uncontrolled motion of the main telescope is also considered.!19
机译:摘要:描述了两种使用激光制导星(LGS)感测全孔径倾斜的技术。第一种技术利用了通过主光学系统传输的全孔径光束。在横向上与发射器分开的两个辅助望远镜用于测量激光信标图像的运动。通过在激光信标角度范围内对LGS图像进行平均,可以消除向下传播路径对使用辅助望远镜测量的倾斜的影响。这种平均要求接收机的FOV大大超过倾斜角相关标度。第二种方法利用从主望远镜的主镜的一部分后面发射的小孔径光束。同时使用主望远镜和辅助望远镜测量激光信标图像的运动。通过从用辅助望远镜测得的主望远镜测得的倾角中减去用主望远镜测得的倾角来确定全光圈的倾斜度。该方法不需要通过主光学系统传输激光辐照度,它可以用于中层钠层。还考虑了一种用于测量主望远镜失控运动的方案。!19

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