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Antenna calibration and digital beam forming technique of the digital array radar

机译:数字阵列雷达的天线标定和数字波束形成技术

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The digital array radar (DAR) is a fully digitized phased array radar in which digital beam forming technique is used both in receive and transmit. A lot of simulations are made about the influence of amplitude-phase error on the antenna pattern, since amplitude-phase error of the antenna will severely affect the performances of the digital array radar. Based on the far-field external monitoring principle, the amplitude-phase error calibration method of the digital processing is studied, and the “in-the-field calibration” method, combining the reference data and the mid-field monitoring, is finally presented. Besides, the key techniques of the real-time DBF based on the FPGA processing platform are analyzed. The test results show that by using the method proposed, the high-precise calibration data can be obtained and the antenna beam after calibration can meet the digital array radar's requirements, and moreover the FPGA processing platform can realize the real-time multi-beam processing. It is a probe that the method combines the reference data and the mid-field monitoring, which is a simple, feasible and effective method for the digital array radar in the field calibration.
机译:数字阵列雷达(DAR)是一种完全数字化的相控阵雷达,其中在接收和发射中都使用了数字波束形成技术。由于幅度相位误差会严重影响数字阵列雷达的性能,因此对幅度相位误差对天线方向图的影响进行了许多仿真。基于远场外部监测原理,研究了数字处理的幅相误差校正方法,最后提出了一种将参考数据与中场监测相结合的“现场校正”方法。 。此外,分析了基于FPGA处理平台的实时DBF的关键技术。测试结果表明,所提方法可以得到高精度的标定数据,标定后的天线波束可以满足数字阵列雷达的要求,而且FPGA处理平台可以实现实时的多波束处理。 。该方法将参考数据与中场监测相结合,是一种简单,可行,有效的数字阵列雷达现场标定方法。

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