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Coupling of Estimation and Sensor Tasking Applied to Satellite Tracking

机译:估计和传感器任务分配的耦合应用于卫星跟踪

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The tracking of resident space objects has been a topic of recent concern due to the numerous objects that must be monitored with respect to relatively few sensors that can observe them. This discrepancy creates situations in which sensors have multiple objects within their view and must decide which to observe and which to ignore at a particular time, a process known as sensor tasking or sensor network management Previous studies have suggested calculating information- (or covariance-) based metrics to aid in this process, which rely on uncertainty estimates of an object's location obtained using a nonlinear estimator. In these studies, the coupling between estimation and sensor tasking is investigated using two covariance-based tasking strategies in conjunction with two nonlinear estimators applied within a simple planar satellite-tracking simulation. Results demonstrate that the use of more accurate estimators leads to better overall estimates, not only due to the advantages within the estimation methods, but from the improvement in tasking decisions due to selection of these estimators. In addition, the paper introduces a new utility metric based on approximating stability of the estimation error through estimating a largest Lyapunov exponent, which is shown to outperform an existing Fisher information tasking approach.
机译:由于必须相对于能够观察到它们的相对较少的传感器来监视众多物体,因此对居住空间物体的跟踪已经成为近期关注的话题。这种差异造成了这样的情况,即传感器在其视图内有多个对象,并且必须决定在特定时间观察哪些对象以及忽略哪些对象,这一过程称为传感器任务分配或传感器网络管理。先前的研究建议计算信息(或协方差)基于度量的方法来辅助此过程,该方法依赖于使用非线性估计器获得的对象位置的不确定性估计。在这些研究中,使用两种基于协方差的任务分配策略以及在简单的平面卫星跟踪仿真中应用的两个非线性估算器,研究了估计和传感器任务分配之间的耦合。结果表明,使用更准确的估算器可以带来更好的总体估算,这不仅是由于估算方法的优势,还在于由于选择了这些估算器而使任务决策得到了改善。此外,本文通过估计最大Lyapunov指数引入了一种基于估计误差的近似稳定性的新效用度量,该度量表明其性能优于现有的Fisher信息任务方法。

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  • 来源
    《Journal of guidance, control, and dynamics》 |2013年第4期|993-1007|共15页
  • 作者单位

    Department of Aerospace Engineering, 229 Hammond Building Pennsylvania State University, University Park, Pennsylvania 16802;

    Department of Aerospace Engineering, 229 Hammond Building Pennsylvania State University, University Park, Pennsylvania 16802;

    Space Vehicles Directorate U.S. Air Force Research Laboratory, Albuquerque, New Mexico 87117;

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