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A computer-aided telescope pointing system utilizing a video star tracker

机译:利用视频星跟踪器的计算机辅助望远镜指向系统

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摘要

The Video Inertial Pointing (VIP) System developed to satisfy the acquisition and pointing requirements of astronomical telescopes is described. A unique feature of the system is the use of a single sensor to provide information for the generation of three axis pointing error signals and for a cathode ray tube (CRT) display of the star field. The pointing error signals are used to update the telescope's gyro stabilization and the CRT display is used by an operator to facilitate target acquisition and to aid in manual positioning of the telescope optical axis. A model of the system using a low light level vidicon built and flown on a balloon-borne infrared telescope is briefly described from a state of the art charge coupled device (CCD) sensor. The advanced system hardware is described and an analysis of the multi-star tracking and three axis error signal generation, along with an analysis and design of the gyro update filter, are presented. Results of a hybrid simulation are described in which the advanced VIP system hardware is driven by a digital simulation of the star field/CCD sensor and an analog simulation of the telescope and gyro stabilization dynamics.
机译:描述了为满足天文望远镜的采集和指向要求而开发的视频惯性指向(VIP)系统。该系统的独特功能是使用单个传感器来提供信息,以生成三轴指向误差信号以及星场的阴极射线管(CRT)显示。指向误差信号用于更新望远镜的陀螺仪稳定度,操作员使用CRT显示来促进目标的获取并帮助手动定位望远镜的光轴。从最先进的电荷耦合器件(CCD)传感器中,简要介绍了使用在气球型红外望远镜上建立并飞行的低光照度视频的系统模型。描述了先进的系统硬件,并介绍了多星跟踪和三轴误差信号生成的分析,以及陀螺仪更新滤波器的分析和设计。描述了混合仿真的结果,其中先进的VIP系统硬件由星场/ CCD传感器的数字仿真以及望远镜和陀螺仪稳定动力学的模拟仿真驱动。

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