期刊文献+

基于星历和回波的分布式卫星SAR系统沿航迹基线计算方法

Along-Track Baseline Determination for Distributed-Satellite SAR Systems Based on Ephemeris Data and Radar Echoes
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摘要 针对分布式卫星SAR系统中混合基线和雷达斜视导致沿航迹基线难以精确计算的问题,提出了一种基于星历和回波数据的沿航迹基线计算方法。在将分布式卫星航迹补偿为平行航迹的基础上,建立了存在混合基线及雷达斜视条件下的观测几何模型,推导了沿航迹基线的计算公式。根据雷达回波数据估计多普勒中心频率,并由此得到计算沿航迹基线所需的斜视角。在空间基线较长、斜视角较大条件下,该方法相比近似计算方式而言,能获得高精度的沿航迹基线估计。仿真结果表明,用该方法计算得到的沿航迹基线长度作为测速定位的基线参数,可以获得高精度的动目标测速定位结果。 Three-dimensional sparse distribution of the antennas and squint SAR in distributed-satellite SAR systems makes it difficult to estimate the along-track baseline accurately. Thus, an along-track baseline determination method is proposed based on ephemeris data and radar echoes. The geometric model of squint SAR systems with satellites distributed in three-dimensional space is established after the non-parallel track compensation. And the formula for calculating the along-track baseline is deduced. The squint angle is obtained according to the Doppler eentroid estimated from the radar echoes. Compared with some approximate methods, more accurate results can be achieved with this method in the case of long baseline and large squint angle. Simulation results illustrate that accurate velocity estimation and relocation of moving targets can be obtained by using the proposed method to determinate the along-track baseline.
出处 《宇航学报》 EI CAS CSCD 北大核心 2012年第1期113-119,共7页 Journal of Astronautics
基金 国家自然科学基金(60901066 60825104) 长江学者和创新团队发展计划(IRT-0954) 教育部博士点基金(20090203120006) 国防预研基金(9140C0101081001)
关键词 分布式卫星 地面动目标检测 沿航迹基线 目标参数估计 Distributed-satellite Ground moving target indication Along-track baseline Target parameter estimation
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  • 1李真芳,王彤,保铮,廖桂生.同时地形高程测量和地面运动目标检测的分布式InSAR最优编队构形[J].宇航学报,2004,25(6):642-648. 被引量:11
  • 2刘颖,廖桂生,周争光.对图像配准误差稳健的分布式星载SAR地面运动目标检测及高精度的测速定位方法[J].电子学报,2007,35(6):1009-1014. 被引量:10
  • 3Ishuwa S and Christoph G. Ground moving target detection for along-track interferometric SAR data[C]. Proc. of IEEE Aerospace Conference, Big Sky, Montana, USA, 2004: 2227-2235. 被引量:1
  • 4Chapin E and Chen C W. GMTI along-track interferometry experiment[J]. IEEE Trans. on AES, 2006, 21(3): 15-20. 被引量:1
  • 5Romeiser R, Runge H, Suchandt S, Sprenger J, Weilbeer H, Sohrmann A, and Stammer D. Current measurement in rivers by spaceborne along-track INSAR. IEEE Trans. on GRS, 2007, 45(12): 4019-4031. 被引量:1
  • 6Shen C. Performace analysis of RADARSAT-2 multi-channel MODEX modes[C]. EuRAD, Munich, Germany, 2007, 10:170-173. 被引量:1
  • 7Kun R, Prinet V, Xiangquan S, and Feng W. Comparison of satellite baseline estimation methods for interferometry applications[C]. IGARSS, Toulouse, France, 2003, 6: 3821-3823. 被引量:1
  • 8Bing C, Shaojian X, and Ping Z. Estimation of INSAR baseline based on the frequency shift theory[C]. CIE International Conference on Radar, Shanghai, China, 2006: 1-3. 被引量:1
  • 9Goodman N A, Lin S C, Rajakrishna D, et al. Processing of multiple-receiver spaceborne arrays for wide-area SAR [ J]. IEEE Transactions on Geosciencc and Remote Sensing, 2002, 40 (4) : 841 - 852. 被引量:1
  • 10Massonnet D. Capabilities and limitation of the interferometric cartwhcel[J ]. IEEE Transactions on Geoscience and Remote Sensing, 2001, 39 (3) : 506 - 520. 被引量:1

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