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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Symmetrical difference pattern monopulse for low-angle tracking with array radar
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Symmetrical difference pattern monopulse for low-angle tracking with array radar

机译:阵列雷达低角度跟踪的对称差模式单脉冲

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摘要

Tracking low-elevation targets over a smooth surface is challenging because of the multipath effect. The symmetrical difference pattern monopulse is proposed for low-angle tracking with array radar. At first, the optimal symmetrical difference pattern is designed. The proposed monopulse is implemented using symmetrical sum and difference patterns by digital beam forming. The monopulse ratio derived from the symmetrical sum and difference patterns is not affected by the multipath effect. Then, the performance of the symmetrical difference pattern monopulse is evaluated by simulations in terms of the signal-to-noise ratio, target elevation, and complex reflection coefficient. Field data sets acquired from a VHF array radar are used for validation. It is found that the measurement error is still less than 1/30th of a beamwidth when the target elevation is less than a quarter of a beamwidth. The proposed monopulse scheme is suitable for VHF array radar, for which the multipath effect is serious.
机译:由于多径效应,在光滑表面上跟踪低海拔目标具有挑战性。提出了对称差分模式单脉冲用于阵列雷达低角度跟踪。首先,设计最佳的对称差模式。所提出的单脉冲是通过数字波束形成使用对称的和和差模式实现的。从对称和差模式对称得出的单脉冲比率不受多径效应的影响。然后,通过仿真根据信噪比,目标仰角和复反射系数来评估对称差分模式单脉冲的性能。从甚高频阵列雷达获取的现场数据集用于验证。发现当目标标高小于光束宽度的四分之一时,测量误差仍小于光束宽度的1/30。所提出的单脉冲方案适用于多径效应严重的甚高频阵列雷达。

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