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Intelligent Motion Compensation for Improving the Tracking Performance of Shipborne Phased Array Radar

机译:智能运动补偿可改善舰载相控阵雷达的跟踪性能

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摘要

The shipborne phased array radar must be able to compensate the ship's motion and track the maneuvering targets automatically. In this paper, the real-time beam pointing error compensation mechanism of a planar array antenna for ship's motion is designed to combine with the Kalman filtering. The effect of beam pointing error on the tracking performance of shipborne phased array radar is examined. A compensation mechanism, which can automatically correct the beam pointing error of the planar antenna array, is proposed for shipborne phased array radar in order to achieve the required tracking accuracy over the long dwell time. The automatic beam pointing error compensation mechanism employs the parallel fuzzy basis function network (FBFN) architecture to estimate the beam pointing error caused by roll and pitch of the ship. In the simulation, the models of roll and pitch are used to evaluate the performance of beam pointing error estimation mechanism based on the proposed parallel FBFN architecture. In addition, the effect of automatic beam pointing error compensation mechanism on the tracking performance of adaptive extended Kalman filter (AEKF) implemented in ship borne phased array radar is also investigated. Simulations find out that the proposed algorithms are stable and accurate.
机译:舰载相控阵雷达必须能够补偿舰船的运动并自动跟踪机动目标。本文设计了一种结合舰船运动的平面阵列天线实时波束指向误差补偿机制。研究了波束指向误差对舰载相控阵雷达跟踪性能的影响。针对舰载相控阵雷达,提出了一种可以自动校正平面天线阵列波束指向误差的补偿机制,以在较长的停留时间内实现所需的跟踪精度。自动波束指向误差补偿机制采用并行模糊基函数网络(FBFN)架构来估计由船舶的侧倾和俯仰引起的波束指向误差。在仿真中,基于所提出的并行FBFN架构,使用滚动和俯仰模型来评估波束指向误差估计机制的性能。此外,还研究了自动波束指向误差补偿机制对舰载相控阵雷达中实现的自适应扩展卡尔曼滤波器(AEKF)跟踪性能的影响。仿真结果表明,所提出的算法稳定,准确。

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  • 来源
    《International journal of antennas and propagation》 |2013年第2期|384756.1-384756.14|共14页
  • 作者单位

    Communication Research Center, Yuan-Ze University, 135 Yuan-Tung Road, Jungli, Taoyuan 320, Taiwan,Department of Communications Engineering, Yuan-Ze University, 135 Yuan-Tung Road, Jungli, Taoyuan 320, Taiwan;

    Department of Communications Engineering, Yuan-Ze University, 135 Yuan-Tung Road, Jungli, Taoyuan 320, Taiwan;

    Department of Communications Engineering, Yuan-Ze University, 135 Yuan-Tung Road, Jungli, Taoyuan 320, Taiwan;

    Department of Communications Engineering, Yuan-Ze University, 135 Yuan-Tung Road, Jungli, Taoyuan 320, Taiwan;

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