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Bayesian field tracking

机译:贝叶斯场跟踪

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摘要

Abstract: In this paper we address the problem of tracking a signal through successive intervals of matched-filter processing. The common approach to this problem is to locate candidate detections in the matched- filter output at each interval, to associate successive detections in state space, to estimate successive states through a Kalman filter application, and to rank association sequences (tracks) with respect to kinematic consistency. However, if a signature model is available and matched-filter statistics are known, the matched-filter output can be converted to a likelihood function that can drive recursive Bayesian processing for the signal state distribution (and no-signal probability). The field tracker described here follows this processing, compromising the optimality of the Bayesian approach only through the discreteness of the state-space domain. The field approach has a detection capability superior to that of an association approach for low SNR signals, and it is highly compatible with parallel processing. An application to the detection and tracking of a constant-velocity signal in 4-D state space (2-D position, 2-D velocity) is provided by way of illustration, and it demonstrates the ability to achieve a conclusive detection of a 3.5-dB-per-update target in ten updates. A number of application alternatives are described that extend the concept to multiple-target scenarios, refined velocity estimates, connection to velocity-independent processing steams, and computationally efficient means of estimating kinematic variables and signal amplitude through auxiliary fields.!7
机译:摘要:在本文中,我们解决了通过匹配滤波器处理的连续间隔跟踪信号的问题。解决此问题的常用方法是在每个间隔的匹配滤波器输出中定位候选检测,将状态空间中的相继检测关联起来,通过卡尔曼滤波器应用估算相继状态,并针对关联序列(轨道)进行排序运动一致性。但是,如果签名模型可用并且匹配滤波器统计信息已知,则可以将匹配滤波器输出转换为似然函数,该似然函数可以驱动信号状态分布(和无信号概率)的递归贝叶斯处理。此处描述的场跟踪器遵循该处理,仅通过状态空间域的离散性就损害了贝叶斯方法的最优性。现场方法的检测能力优于针对低SNR信号的关联方法,并且与并行处理高度兼容。通过举例说明,提供了一种在4-D状态空间(2-D位置,2-D速度)中检测和跟踪恒定速度信号的应用,它展示了实现3.5的结论性检测的能力。 -dB更新目标,十次更新。描述了许多应用程序替代方案,这些概念将概念扩展到多目标方案,精确的速度估计,与速度无关的处理蒸汽的连接,以及通过辅助场估算运动变量和信号幅度的高效计算手段!7

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