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Joint Detection and Tracking of Unresolved Targets with a Monopulse Radar Using a Particle Filter

机译:使用粒子过滤器与单孔雷达的联合检测和跟踪未解决的目标

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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. In this paper, a new algorithm is developed to jointly detect and track more than two targets from a single detected bin. This method involves the use of tracking data in detection. For this purpose, target states are transformed into detection parameter space, which involves high nonlinearity. In order to handle this, the sequential Monte Carlo (SMC) method, which is proved to be effective for 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 SMC steps, the detection parameters corresponding to the predicted particles are evaluated using the nonlinear monopulse radar beam model. It in turn enables the evaluation of the likelihood of the monopulse signal given tracking data. That is, we evaluate the likelihoods of different hypotheses of possible combinations of targets being in different detected bins. The hypothesis testing is used to find the correct detection event. The particles are updated and resampled according to the hypothesis that has the highest likelihood (score). A simulated amplitude comparison monopulse radar is used to generate the data with more than unresolved two targets. Simulation results confirm the possible extraction and tracking of more than two targets jointly.
机译:用Monopulse雷达的多个未解决目标的检测和估计是一个具有挑战性的问题。对于理想的单箱处理,在文献中示出,可以从复合匹配的滤波器输出信号中提取最多两个未解决的目标。在本文中,开发了一种新的算法,以共同检测和跟踪来自单个检测到的垃圾箱的两个以上的目标。该方法涉及在检测中使用跟踪数据。为此目的,目标状态转变为检测参数空间,涉及高非线性。为了处理这一点,证明是用于非线性非高斯估计问题的顺序蒙特卡罗(SMC)方法,作为用于跟踪多个未解决目标的闭环系统的基础。除了标准SMC步骤之外,还使用非线性单孔雷达光束模型评估与预测粒子对应的检测参数。反过来,它能够评估给定跟踪数据的Monopulse信号的可能性。也就是说,我们评估不同假设的可能组合在不同检测到的垃圾箱中的可能性。假设测试用于找到正确的检测事件。根据具有最高似然性(得分)的假设更新并重新采样粒子。模拟幅度比较Monopulse雷达用于生成具有多于未解决的两个目标的数据。仿真结果共同证实了可能的提取和跟踪两个以上的目标。

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