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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Improved tracking of maneuvering targets: The use of turn-rate distributions for acceleration modeling
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Improved tracking of maneuvering targets: The use of turn-rate distributions for acceleration modeling

机译:改进了对机动目标的跟踪:使用转弯速率分布进行加速建模

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Tactically maneuvering targets are difficult to track since acceleration cannot be observed directly and the accelerations are induced by human control or an autonomous guidance system therefore they are not subject to deterministic models. A common tracking system is the two-state Kalman filter with a Singer maneuver model where the second-order statistics of acceleration is the same as a first-order Markov process. The Singer model assumes a uniform probability distribution on the targets acceleration which is independent of the x and y direction. In practice, it is expected that targets have constant forward speed and an acceleration vector normal to the velocity vector, a condition not present in the Singer model. The work of Singer is extended by presenting a maneuver model which assumes constant forward speed and a probability distribution on the targets turn-rate. Details of the model are presented along with sample simulation results.
机译:战术机动目标难以跟踪,因为无法直接观察到加速度,并且加速度是由人为控制或自主制导系统引起的,因此它们不受确定性模型的约束。常见的跟踪系统是具有Singer机动模型的二态卡尔曼滤波器,其中加速度的二阶统计量与一阶马尔可夫过程相同。 Singer模型假设目标加速度上的概率分布均匀,而与x和y方向无关。在实践中,期望目标具有恒定的前进速度和垂直于速度矢量的加速度矢量,这是Singer模型中不存在的条件。 Singer的工作通过提出一个机动模型来扩展,该模型假定恒定的前进速度和目标转弯速率上的概率分布。该模型的详细信息与示例仿真结果一起提供。

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