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Estimation of position and velocity for a low dynamic vehicle in near space using nonresolved photometric and astrometric data

机译:使用非溶解的光度和天空测量数据估算近空间的低动态车辆的位置和速度

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摘要

An estimation method for indirectly observable parameters for a typical low dynamic vehicle (LDV) is presented. The estimation method utilizes apparent magnitude, azimuth angle, and elevation angle to estimate the position and velocity of a typical LDV, such as a high altitude balloon (HAB). In order to validate the accuracy of the estimated parameters gained from an unscented Kalman filter, two sets of experiments are carried out to obtain the nonresolved photometric and astrometric data. In the experiments, a HAB launch is planned; models of the HAB dynamics and kinematics and observation models are built to use as time update and measurement update functions, respectively. When the HAB is launched, a ground-based optoelectronic detector is used to capture the object images, which are processed using aperture photometry technology to obtain the time-varying apparent magnitude of the HAB. Two sets of actual and estimated parameters are given to clearly indicate the parameter differences. Two sets of errors between the actual and estimated parameters are also given to show how the estimated position and velocity differ with respect to the observation time. The similar distribution curve results from the two scenarios, which agree within 3s, verify that nonresolved photometric and astrometric data can be used to estimate the indirectly observable state parameters (position and velocity) for a typical LDV. This technique can be applied to small and dim space objects in the future. (C) 2017 Optical Society of America
机译:介绍了一种典型低动态车辆(LDV)间接观察参数的估计方法。估计方法利用表观幅度,方位角和仰角来估计典型的LDV的位置和速度,例如高海拔气囊(HAB)。为了验证从未入的卡尔曼滤波器获得的估计参数的准确性,进行两组实验以获得非溶解的光度和天数数据。在实验中,计划了HAB发布; HAB动态和运动学和观测模型的模型分别用于时间更新和测量更新功能。当HAB被启动时,使用基于地基的光电检测器来捕获使用光圈测光技术处理的物体图像,以获得HAB的时变形幅度。给出两组实际和估计参数以清楚地表明参数差异。还给出了实际和估计参数之间的两组误差,以示出估计位置和速度如何相对于观察时间的差异。类似的分布曲线来自3S内同意的两种情况,验证了非溶解的光度和天数数据可以用于估计典型LDV的间接可观察状态参数(位置和速度)。该技术可以在将来应用于小型和暗淡空间物体。 (c)2017年光学学会

著录项

  • 来源
    《Applied optics》 |2017年第3期|共11页
  • 作者

    Jing Nan; Li Chuang; Chong Yaqin;

  • 作者单位

    Chinese Acad Sci Xian Inst Opt &

    Precis Mech Xian 710119 Peoples R China;

    Chinese Acad Sci Xian Inst Opt &

    Precis Mech Xian 710119 Peoples R China;

    Chinese Acad Sci Xian Inst Opt &

    Precis Mech Xian 710119 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
  • 关键词

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