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Pointing error due to temperature distribution of SiC reflectors in intersatellite laser communications

机译:卫星间激光通信中由于SiC反射器的温度分布导致的指向误差

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摘要

Wave-front aberrations due to thermal deformation of elliptical reflectors in periscopic laser communication terminals are studied, and are fitted by Zernike elliptical polynomials. The relationship between pointing error and temperature distribution of elliptical reflectors in intersatellite laser communication systems is researched. The back-fixing method is introduced for fixing the elliptical reflectors, and is proven to reduce pointing error compared to the traditional around-fixing method using a press board. It is shown that the difference between uniform temperature and reference temperature has a much stronger influence than the temperature gradient. For the back-fixing method, the pointing error changes periodically as the uniform temperature changes with a period value of 1.6 deg C, and the maximum pointing error value is 16.7 (mu)rad. The result also tells us that, if the difference between uniform temperature and reference temperature is within 1.0 deg C, there is no pointing error caused by back-fixed reflectors. We hope this work can contribute to the thermal control of elliptical reflectors in intersatellite laser communication terminals.
机译:研究了椭圆形反射镜通信终端中由于椭圆形反射镜的热变形引起的波前像差,并通过Zernike椭圆多项式进行拟合。研究了星际激光通信系统中椭圆形反射镜的指向误差与温度分布之间的关系。引入了用于固定椭圆形反射镜的背面固定方法,并且与使用压板的传统环绕固定方法相比,该方法已被证明可以减少指向误差。结果表明,均匀温度和参考温度之间的差异具有比温度梯度更大的影响。对于后固定方法,随着均匀温度以1.6℃的周期值变化,指向误差周期性地变化,并且最大指向误差值为16.7μrad。该结果还告诉我们,如果均匀温度和参考温度之间的差在1.0摄氏度以内,则不会出现由后固定反射镜引起的指向误差。我们希望这项工作能够为星际激光通信终端中的椭圆形反射镜的热控制做出贡献。

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