确定单脉冲雷达站数字天线网格目标方向的方法

N.V. Shatskiy, Nikolay А. Hodataev
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引用次数: 0

摘要

在对某数字天线阵列雷达站目标单脉冲测向方法误差分析的基础上,将扫描天线系统波束时等信号方向波动以及单脉冲群产生波束形状不相同的一组误差分离成一个特殊的簇。这种情况对于采用电扫描相控阵的大孔径雷达尤为重要,因为形成的接收波束数量很大,而且目标的坐标通常与测量坐标所沿的坐标平面不重合。这个问题的非线性需要独特的方法和解决方案。该问题的经典表述涉及到从已知的固定时间的天线阵输出处的复信号的测量向量中获得整个天线阵的辐射向量的估计。为了解决这一问题并确定决策规则,采用神经网络方法,并根据所选目标函数的最小值准则对神经网络进行训练。给出了在不形成测向特性的情况下,利用神经网络提高单脉冲扫描数字相控阵雷达数据处理过程中角坐标测量精度的依据。通过矩形空间域单脉冲法测量角坐标的误差方差曲面,给出了在天线阵模型中采用的假设条件下(以尺寸为30 × 30的平面天线阵为例)对天线阵特性的建模结果。减小了误差,扩大了测量面积。在未来,假设在无线电测向器频率相关部分的接收路径中使用FPGA实现该方法的实际实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method for determining the target direction of a digital antenna GRID OF A MONOPULSE radar station
On the basis of the analysis of the errors of the monopulse method of direction finding of the target of a radar station with a digital antenna array, a group of errors associated with fluctuations of the equisignal direction when scanning the beam of the antenna system, as well as with the non-identical shape of the generated beams of the monopulse group, was separated into a special cluster. This circumstance is especially critical for large-aperture radars with phased array with electric scanning, where the number of formed receiving beams is significant, in addition, the coordinates of the target usually do not coincide with the coordinate planes along which the coordinates are measured. The nonlinearity of this problem requires unique approaches and solutions. The classical formulation of the problem is associated with obtaining an estimate of the radiation vector of the entire antenna array from the known measured vector of complex signals at the output of the antenna array at a fixed time. To solve this problem and determine the decision rule, a neural network approach was used, while the neural network was trained according to the criterion of the minimum of the selected objective function. The substantiation of increasing the accuracy of measurements of angular coordinates in monopulse systems with scanning digital phased antenna arrays based on the use of neural networks in the process of radar data processing without the formation of direction finding characteristics is given. The results of modeling the characteristics of the antenna array (using the example of a flat antenna array with a dimension of 30 by 30 emitters) under the conditions adopted in the model of the antenna array of assumptions when implementing the classical and original methods are shown using examples of the surfaces of the variances of errors in measuring angular coordinates by the monopulse method in a rectangular spatial domain, which showed reduction of error and expansion of the measurement area. In the future, the practical implementation of this approach is assumed using FPGA in the receiving paths of the frequency-dependent part of the radio direction finder.
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