Due to the requirement of anti-interception and the limitation of processing capability of the fusion center, the subarray selection is very important for the distributed multiple-input multiple-output(MIMO) radar sys...Due to the requirement of anti-interception and the limitation of processing capability of the fusion center, the subarray selection is very important for the distributed multiple-input multiple-output(MIMO) radar system, especially in the hostile environment. In such conditions, an efficient subarray selection strategy is proposed for MIMO radar performing tasks of target tracking and detection. The goal of the proposed strategy is to minimize the worst-case predicted posterior Cramer-Rao lower bound(PCRLB) while maximizing the detection probability for a certain region. It is shown that the subarray selection problem is NP-hard, and a modified particle swarm optimization(MPSO) algorithm is developed as the solution strategy. A large number of simulations verify that the MPSO can provide close performance to the exhaustive search(ES) algorithm. Furthermore, the MPSO has the advantages of simpler structure and lower computational complexity than the multi-start local search algorithm.展开更多
针对雷达电子战中,敌方无源探测雷达通过接收干扰机信号实现测向定位,威胁我方干扰机安全的问题,提出一种基于频率分集阵列(Frequency Diverse Array,FDA)的测向交叉定位欺骗技术。首先在建立FDA阵列模型的基础上,通过欧拉公式得到采用...针对雷达电子战中,敌方无源探测雷达通过接收干扰机信号实现测向定位,威胁我方干扰机安全的问题,提出一种基于频率分集阵列(Frequency Diverse Array,FDA)的测向交叉定位欺骗技术。首先在建立FDA阵列模型的基础上,通过欧拉公式得到采用非线性频控函数的FDA阵列因子及相位方向图;然后推导了FDA阵列作用于干涉仪测得的信号到达角β、虚拟发射机在X轴的坐标位置x;接着,以干涉仪测向欺骗为基础,分析了FDA干扰机对测向交叉定位系统的欺骗原理及定位精度。仿真结果表明:通过合理地对载频、阵元数目、频偏的选择可以较好地实现在远场条件下FDA阵列对干涉仪测向的欺骗效果;在合理选择其他参数的同时,测向精度越高、定位模糊区面积越小,且定位虚拟干扰机位置始终落在50%CEP半径之外。展开更多
基金supported by the National Natural Science Foundation of China(61601504)。
文摘Due to the requirement of anti-interception and the limitation of processing capability of the fusion center, the subarray selection is very important for the distributed multiple-input multiple-output(MIMO) radar system, especially in the hostile environment. In such conditions, an efficient subarray selection strategy is proposed for MIMO radar performing tasks of target tracking and detection. The goal of the proposed strategy is to minimize the worst-case predicted posterior Cramer-Rao lower bound(PCRLB) while maximizing the detection probability for a certain region. It is shown that the subarray selection problem is NP-hard, and a modified particle swarm optimization(MPSO) algorithm is developed as the solution strategy. A large number of simulations verify that the MPSO can provide close performance to the exhaustive search(ES) algorithm. Furthermore, the MPSO has the advantages of simpler structure and lower computational complexity than the multi-start local search algorithm.
文摘针对雷达电子战中,敌方无源探测雷达通过接收干扰机信号实现测向定位,威胁我方干扰机安全的问题,提出一种基于频率分集阵列(Frequency Diverse Array,FDA)的测向交叉定位欺骗技术。首先在建立FDA阵列模型的基础上,通过欧拉公式得到采用非线性频控函数的FDA阵列因子及相位方向图;然后推导了FDA阵列作用于干涉仪测得的信号到达角β、虚拟发射机在X轴的坐标位置x;接着,以干涉仪测向欺骗为基础,分析了FDA干扰机对测向交叉定位系统的欺骗原理及定位精度。仿真结果表明:通过合理地对载频、阵元数目、频偏的选择可以较好地实现在远场条件下FDA阵列对干涉仪测向的欺骗效果;在合理选择其他参数的同时,测向精度越高、定位模糊区面积越小,且定位虚拟干扰机位置始终落在50%CEP半径之外。