用于飞机运动矢量分量测量的雷达

V. Pavlikov, Valeriy Volosyuk, E. Tserne, Natalііa M. Sydorenko, Ihor Prokofiev, M. Peretiatko
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引用次数: 0

摘要

合成了一种测量直升机全飞行速度矢量三分量的雷达信号处理优化算法。为此已经解决了几个局部问题。特别是考虑到直升机相对于下垫面可以在空间中占据任意位置,得到了雷达天线与下垫面的距离方程。在所解决的问题中,天线辐射方向图相对于直升机建筑轴线是刚性固定的。传统方法是通过多普勒频移测量沿0x和0y坐标的速度矢量分量,与传统方法不同,该方法使用了下垫面辐照截面内的距离“偏移”信息参数。作为探测信号,使用线性调频信号的可行性得到了证实。与传统的合成速度确定问题的方法不同,本文提出将接收到的信号表示为由天线方向图照射区域反射的信号的叠加。结果表明,在测量距离变化规律的三个独立通道上形成三个独立的光束就足以解决这一问题。在综合信号处理算法的基础上,绘制了雷达的结构图。雷达模拟的结果证实了报告结果的有效性。
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Radar for Aircraft Motion Vector Components Measurement
An algorithm for optimal signal processing in the radar, measuring three components of the full helicopter flight speed vector, has been synthesized. Several partial problems have been solved for this. In particular, the equation of the distance between the radar antenna and the underlying surface has been found, considering that the helicopter can occupy any position in space relative to the underlying surface. In the solved problem, the antenna radiation pattern is rigidly fixed relative to the helicopter building axis. Unlike the traditional approach, which consists of measuring the components of the velocity vector along the 0x and 0y coordinates by the Doppler frequency shift, the range “migration” information parameter within the irradiated section of the underlying surface is used. As a probing signal, the feasibility of using a signal with linear frequency modulation is substantiated. In contrast to the conventional approach to synthesizing speed determination problems, it is proposed to present the received signal as a superposition of signals reflected by the area irradiated by the antenna's directional pattern. It is shown that it is enough to form three independent beams that are correspond to three independent channels of measuring the law of the range change to solve the problem. Based on the synthesized signal processing algorithm, a structural diagram of the radar has been developed. The results of radar modeling confirm the effectiveness of the results presented in the report.
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