首页> 外文会议>2019 IEEE 39th International Conference on Electronics and Nanotechnology >The Method of Increasing the Detection Range of Unmanned Aerial Vehicles In Multiradar Systems Based on Surveillance Radars
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The Method of Increasing the Detection Range of Unmanned Aerial Vehicles In Multiradar Systems Based on Surveillance Radars

机译:基于监视雷达的多雷达系统中增加无人机探测距离的方法

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The paper analyses a model of a small base synchronous multiradar system on the basis of two-coordinate surveillance radar, which will enable to increase the detection range of unmanned aerial vehicles. Separate positions of elements of such systems are spacious apart from each other, but the processing of radar information is carried out in a single point. A special feature will be the using of radars with mechanical rotation in the azimuth plane as elements of the system. It will increase the efficiency of detection due to the using of radar information contained in the structure of the electromagnetic field more efficiently than the monostatic two-coordinate radars. The advantage will be an increasing in the energy potential of the system as a result of the addition of the power of the pulses of individual radars and an increasing in the gain of the antenna array due to the more directional properties of the antenna array compared to single antenna. Calculations of the multiradar system parameters are carried out by the method of mathematical modelling.
机译:本文在二坐标监视雷达的基础上,分析了小型基础同步多雷达系统的模型,这将有可能扩大无人机的探测范围。这样的系统的元件的分开的位置彼此间隔开,但是雷达信息的处理在单个点中进行。一个特殊的功能是将在方位角平面上具有机械旋转功能的雷达用作系统的组成部分。由于比单静态两坐标雷达更有效地利用了电磁场结构中包含的雷达信息,因此将提高检测效率。优点是由于增加了单个雷达的脉冲功率而增加了系统的能量潜力,并且由于天线阵列的定向性比其他天线阵列高,因此天线阵列的增益也增加了。单天线。多雷达系统参数的计算是通过数学建模方法进行的。

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