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Constrained Target Motion Modeling - Part I: Straight Line Track

机译:受限目标运动建模 - 第一部分:直线轨道

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Straight line motion is one of the most fundamental target motions. Its modeling has been well studied for unconstrained targets, e.g., air targets. However, the existing straight line motion models can not be directly used for the constrained case on straight line tracks, which has wide application, e.g., in ground target tracking. In this paper, modeling of the constrained target motion on a straight line track is considered. First, the constraints imposed by the straight track are explicitly set up. Then both direct elimination and projection along-track are applied to obtain two forms of constrained motion models in the 2D Cartesian plane and 3D Cartesian space. The connections between these two forms are studied. It is found that the traditional linear Gaussian assumption is still valid for the nearly constant velocity models, the nearly constant acceleration models and the Singer model. Inspired by this, a general condition under which the traditional linear Gaussian assumption is valid for modeling of constrained motion on a straight track is also discussed.
机译:直线运动是最基本的目标运动之一。它的建模已经很好地研究了无限制的目标,例如空中目标。然而,现有的直线运动模型不能直接用于直线轨道上的受限壳体,其具有广泛的应用,例如在地面目标跟踪中。在本文中,考虑了在直线轨道上的约束目标运动的建模。首先,明确地设置由直轨施加的约束。然后,沿着轨道的直接消除和投影都被应用于在2D笛卡尔平面和3D笛卡尔空间中获得两种形式的受约束运动模型。研究了这两种形式之间的连接。结果发现,传统的线性高斯假设仍然适用于几乎恒定的速度模型,几乎恒定的加速模型和歌手模型。由此激发了一种,还讨论了传统的线性高斯假设对于在直线轨道上建模的传统线性高斯假设有效的一般条件。

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