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首页> 外文期刊>International journal of antennas and propagation >LPI Optimization Framework for Target Tracking in Radar Network Architectures Using Information-Theoretic Criteria
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LPI Optimization Framework for Target Tracking in Radar Network Architectures Using Information-Theoretic Criteria

机译:使用信息论准则的雷达网络体系结构中用于目标跟踪的LPI优化框架

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Widely distributed radar network architectures can provide significant performance improvement for target detection and localization. For a fixed radar network, the achievable target detection performance may go beyond a predetermined threshold with full transmitted power allocation, which is extremely vulnerable in modern electronic warfare. In this paper, we study the problem of low probability of intercept (LPI) design for radar network and propose two novel LPI optimization schemes based on information-theoretic criteria. For a predefined threshold of target detection, Schleher intercept factor is minimized by optimizing transmission power allocation among netted radars in the network. Due to the lack of analytical closed-form expression for receiver operation characteristics (ROC), we employ two information-theoretic criteria, namely, Bhattacharyya distance and J-divergence as the metrics for target detection performance. The resulting nonconvex and nonlinear LPI optimization problems associated with different information-theoretic criteria are cast under a unified framework, and the nonlinear programming based genetic algorithm (NPGA) is used to tackle the optimization problems in the framework. Numerical simulations demonstrate that our proposed LPI strategies are effective in enhancing the LPI performance for radar network.
机译:分布广泛的雷达网络体系结构可以大大提高目标检测和定位的性能。对于固定的雷达网络,可实现的目标检测性能可能会在完全分配发射功率的情况下超过预定阈值,这在现代电子战中极为脆弱。在本文中,我们研究了雷达网络的低截获概率(LPI)设计问题,并基于信息理论标准提出了两种新颖的LPI优化方案。对于目标检测的预定义阈值,可通过优化网络中联网雷达之间的传输功率分配来最小化Schleher拦截因子。由于缺乏针对接收器操作特征(ROC)的解析闭合形式表达式,我们采用了两种信息理论标准,即Bhattacharyya距离和J散度作为目标检测性能的指标。将由此产生的与不同信息理论标准相关的非凸和非线性LPI优化问题放在一个统一的框架下,并使用基于非线性规划的遗传算法(NPGA)来解决框架中的优化问题。数值仿真表明,我们提出的LPI策略可以有效地提高雷达网络的LPI性能。

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