首页> 外文期刊>Sensors >Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform
【24h】

Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform

机译:微波凝视基于非稳态空气搬运平台的相关成像

获取原文
           

摘要

Microwave staring correlated imaging (MSCI), with the technical capability of high-resolution imaging on relatively stationary targets, is a promising approach for remote sensing. For the purpose of continuous observation of a fixed key area, a tethered floating aerostat is often used as the carrying platform for MSCI radar system; however, its non-cooperative random motion of the platform caused by winds and its unbalance will result in blurred imaging, and even in imaging failure. This paper presents a method that takes into account the instabilities of the platform, combined with an adaptive variable suspension (AVS) and a position and orientation system (POS), which can automatically control the antenna beam orientation to the target area and measure dynamically the position and attitude of the stochastic radiation radar array, respectively. By analyzing the motion feature of aerostat platform, the motion model of the radar array is established, then its real-time position vector and attitude angles of each antenna can be represented; meanwhile the selection matrix of beam coverage is introduced to indicate the dynamic illumination of the radar antenna beam in the overall imaging area. Due to the low-speed discrete POS data, a curve-fitting algorithm can be used to estimate its accurate position vector and attitude of each antenna at each high-speed sampling time during the imaging period. Finally, the MSCI model based on the unsteady aerostat platform is set up. In the simulations, the proposed scheme is validated such that under the influence of different unstable platform movements, a better imaging performance can be achieved compared with the conventional MSCI method.
机译:微波凝视相关成像(MSCI),具有相对固定目标的高分辨率成像的技术能力,是遥感的有希望的方法。为了连续观察固定键区域,普遍用作MSCI雷达系统的携带平台。然而,其由风和不平衡引起的平台的非合作随机运动将导致成像模糊,即使在成像故障中也是如此。本文提出了一种方法,考虑到平台的不稳定性,与自适应变量悬架(AVS)和位置和方向系统(POS)组合,其可以自动控制天线波束方向到目标区域并动态测量随机辐射雷达阵列的位置和姿态。通过分析空气蹄平台的运动特征,建立了雷达阵列的运动模型,然后可以表示其每个天线的实时位置矢量和姿态角度;同时引入光束覆盖的选择矩阵以指示整个成像区域中的雷达天线束的动态照明。由于低速离散POS数据,曲线拟合算法可用于在成像时段期间在每个高速采样时间估计其准确的位置向量和每个天线的姿态。最后,建立了基于非稳态空气蹄平台的MSCI模型。在模拟中,验证所提出的方案,使得在不同不稳定平台运动的影响下,与传统的MSCI方法相比,可以实现更好的成像性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号