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An efficient error estimation method for antenna distortions in space based radar

机译:基于空间雷达的天线畸变的有效误差估计方法

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The phased array antenna plays an important role in determining the performance achievable in a space based radar system. However, the array position errors caused by the antenna distortions in the complex cosmic vacuum environment will distort the antenna pattern, which significantly degrades the performance of the radar systems. Most of the conventional estimation methods are proposed based on the random position errors without the consideration of the distortion character for spaceborne arrays, resulting in a large estimation error. In this paper, to address this issue, an efficient array error estimation method is proposed to compensate the antenna distortion errors. In the proposed method, the initial sensor positions can be obtained based on the measured results from the units distributed over the array surface. Then the distortion model parameters can be estimated by solving an optimization problem. Based on this, the sensor positions can be corrected with high accuracy at the lth iteration. In this way, the proposed method can improve the accuracy and the robustness of the estimation simultaneously. Several simulated results are presented to validate the proposed method for the position error estimation in a space based radar system. (C) 2019 Elsevier Inc. All rights reserved.
机译:相控阵天线在确定基于空间的雷达系统中可实现的性能方面起着重要作用。然而,由复杂宇宙真空环境中的天线失真引起的阵列位置误差将扭曲天线图案,这显着降低了雷达系统的性能。基于随机位置误差提出了大多数传统估计方法,而不考虑空间阵列的失真字符,导致大估计误差。在本文中,为了解决这个问题,提出了一种有效的阵列误差估计方法来补偿天线失真误差。在所提出的方法中,可以基于从分布在阵列表面上的单位的测量结果获得初始传感器位置。然后通过解决优化问题,可以估计失真模型参数。基于此,可以在Lth迭代的高精度校正传感器位置。以这种方式,所提出的方法可以同时提高估计的准确性和鲁棒性。提出了几种模拟结果以验证基于空间雷达系统中的位置误差估计的所提出的方法。 (c)2019 Elsevier Inc.保留所有权利。

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