Joint Node Selection and Power Allocation Optimization for Multi-Target ISAR Imaging in Radar Network

Dan Wang, Qun Zhang, Lili Zhu, Qingwei Meng, Jia Liang, Ying Luo
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Abstract

Inverse synthetic aperture radar (ISAR) imaging technology has been widely used in military and civilian areas due to its ability of obtaining the fine structure of a target. However, the contradiction in the use of radar resources is highlighted when facing multi-target ISAR imaging problem. Compared with a single radar, the radar network which is constituted of many dispersed radars is expected to solve the multi-target imaging problem. An efficient resource allocation method plays an important role in guaranteeing the successful completion of the multi-target imaging task and improving the resource utilization of radar network. In this paper, according to the ISAR imaging principle, the relationship between the mission time and radar resources (i.e., radar node and radar power) is analyzed first. Thus the joint node selection and power allocation optimization model for multi-target ISAR imaging in radar network is constructed and the purpose is to minimize the mission time of the multi-target ISAR imaging tasks. Then the optimal radar node selection and power allocation scheme can be further obtained by the circular iterative method of relaxed convex optimization. Simulations demonstrate the effectiveness the proposed method.
雷达网络中多目标ISAR成像联合节点选择与功率分配优化
逆合成孔径雷达(ISAR)成像技术由于能够获得目标的精细结构,在军事和民用领域得到了广泛的应用。然而,在面对多目标ISAR成像问题时,雷达资源利用的矛盾凸显出来。与单一雷达相比,由多台分散雷达组成的雷达网络有望解决多目标成像问题。一种高效的资源分配方法对于保证多目标成像任务的顺利完成,提高雷达网络的资源利用率具有重要的作用。本文根据ISAR成像原理,首先分析了任务时间与雷达资源(即雷达节点和雷达功率)的关系。在此基础上,构建了雷达网络中多目标ISAR成像联合节点选择与功率分配优化模型,以最小化多目标ISAR成像任务的任务时间为目标。然后利用松弛凸优化的圆迭代法得到最优的雷达节点选择和功率分配方案。仿真验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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