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Joint detection and tracking of unresolved targets with monopulse radar

机译:与单脉冲雷达联合检测和跟踪未解决的目标

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摘要

Detection and estimation of multiple unresolved targets with a monopulse radar is a challenging problem. For ideal single bin processing, it was shown in the literature that at most two unresolved targets can be extracted from the complex matched filter output signal. A new algorithm is developed to jointly detect and track more than two unresolved targets from a single detection with the help of tracking information. That is, the method involves the use of tracking information in the detection process. For this purpose, target states are transformed into detection parameter space, which involves high nonlinearities. In order to handle the nonlinearities, the particle filter, which has proven to be effective in nonlinear non-Gaussian estimation problems, is used as the basis of the closed loop system for tracking multiple unresolved targets. In addition to the standard particle filtering steps, the detection parameters corresponding to the predicted particles are evaluated using the nonlinear monopulse radar beam model. This in turn enables the evaluation of the likelihood of the monopulse signal given tracking data. Bayesian model selection is then used to find the correct detection event. The corresponding particle set is taken as the correct representation of the target posterior. A simulated amplitude comparison monopulse radar is used to generate the data and validate the joint detection and tracking of more than two unresolved targets.
机译:用单脉冲雷达检测和估计多个未解决的目标是一个具有挑战性的问题。对于理想的单仓处理,文献表明,可以从复杂的匹配滤波器输出信号中提取最多两个未解析的目标。开发了一种新算法,可以在跟踪信息的帮助下从一次检测中联合检测和跟踪两个以上未解决的目标。即,该方法涉及在检测过程中使用跟踪信息。为此,将目标状态转换到检测参数空间,该空间涉及高度非线性。为了处理非线性,已证明在非线性非高斯估计问题中有效的粒子滤波器被用作跟踪多个未解决目标的闭环系统的基础。除了标准的粒子滤波步骤外,还使用非线性单脉冲雷达波束模型评估与预测粒子相对应的检测参数。这继而使得能够评估给定跟踪数据的单脉冲信号的可能性。然后使用贝叶斯模型选择来找到正确的检测事件。相应的粒子集被视为目标后验的正确表示。模拟的振幅比较单脉冲雷达用于生成数据并验证联合检测和跟踪两个以上未解决的目标。

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