吉林大学学报(信息科学版) ›› 2016, Vol. 34 ›› Issue (6): 724-731.

• 论文 • 上一篇    下一篇

雷达低仰角目标跟踪的测角误差实时补偿算法

齐宏峰 1,2 , 康摇 健 1   

  1. 1. 吉林大学 通信工程学院, 长春 130012; 2. 葫芦岛 92941 部队 92 分队, 辽宁 葫芦岛 125000
  • 收稿日期:2016-01-11 出版日期:2016-11-25 发布日期:2017-01-16
  • 作者简介:齐宏峰(1980— ), 男, 辽宁葫芦岛人, 吉林大学硕士研究生, 92941 部队工程师, 主要从事无线信号传播特性研究,(Tel)86-13842934315 (E-mail)txwsh-019@163. com; 康健(1961— ), 男, 长春人, 吉林大学教授, 硕士生导师, 主要从事卫星通信信道和无线信道传播特性研究, (Tel)86-18643190016(E-mail)kangj@ jlu. edu. cn。

Real-Time Angle Measurement Bias Compensation Algorithm for Low-Elevation Target Tracking

QI Hongfeng 1,2 , KANG Jian 1   

  1. 1. College of Communication and Engineering, Jilin University, Changchun 130012, China;
    2. The Unit 92, The Unit 92941 China People‘’s Liberation Army, Huludao 125000, China
  • Received:2016-01-11 Online:2016-11-25 Published:2017-01-16

摘要: 为提高雷达对低空目标的跟踪精度, 提出了一种基于渐消记忆递推最小二乘法的测角误差实时估计算法。 该算法利用不同设备同时对目标进行跟踪, 得到不同的观测结果。 利用渐消记忆递推最小二乘法对不同的观测结果进行处理, 赋予不同的权值, 得到最终的测角误差估计值。 通过理论分析, 构建多径环境模型, 对该算法的效能进行验证。 仿真结果表明, 由该方法得到的测角误差估计结果估计误差小, 同时可有效减小测角误差的抖动, 得到稳定的测角误差估计结果。

关键词: 偏轴跟踪技术, 渐消记忆递推最小二乘法, 测角误差, 低仰角目标, 实时补偿算法

Abstract: In order to improve the tracking precision of radar to low altitude targets, we propose a novel real-time bias compensation algorithm based on the fading memory recursive algorithm of least squares estimation. Different devises are used to track the target simultaneously and different tracking results are obtained. The recursive algorithm of least squares estimation is used to give different weight to the different tracking results. The estimation of the angle measurement bias is obtained. By theoretical analysis, the multipath environment model is achieved, and the performance of the proposed algorithm is checked. The results show that estimation error of the proposed algorithm is relatively small. And it can also reduce the vibration of the angle measurements and give stable estimating results.

Key words:  low-elevation target, angle measurement bias, real-time compensation algorithm, fading memory recursive algorithm of least squares estimation, off-axis tracking technique

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