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2019, 11, v.49;No.366 975-979
超电大尺寸海面电磁散射计算的混合面元法研究
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摘要:

针对超电大尺寸含有卷浪海面电磁散射回波计算度复杂、计算时间长和计算机资源消耗量大的问题,提出一种基于散射中心理论的混合面元法,从而实现高频率下含有卷浪海面电磁散射回波的快速准确计算。该方法依据斜率将海面面元分成2种,对于平滑区域海面面元采用SPM算法,而对于含浪部分面元采用IEM算法,雷达照射范围内的海面电磁散射回波则根据散射中心理论将所有面元的远区电场叠加得到。通过对含有卷浪海面的电磁回波仿真分析,表明该算法与传统双尺度算法相比能够在保证计算速度的前提下,提高计算精度。

Abstract:

To solve the problems of calculation complexity,long calculation time and large consumption of computer resources for computing the backscattering from super large scale sea surface,a hybrid facet method based on scattering center theory is proposed to achieve the high accuracy calculation of the backscattering from large scale sea surface with breaking waves.The sea surface is divided into two kinds of facets.For the facets which are smooth,the SPM method is applied to calculate the electromagnetic scattering;while for the facets which have breaking waves,the IEM method is used.Finally,the total scattering field of the sea area illuminated by the radar is computed according to the theory of scattering center.The simulation results show that the algorithm can improve the calculation accuracy while ensuring the calculation speed.

参考文献

[1] ROSENBERG L,BOCQUET S.Non-coherent Radar Detection Performance in Medium Grazing Angle X-band Sea Clutter[J].IEEE Transactions on Aerospace and Electronic Systems,2017,53(2):669-682.

[2] 刘勇,周新力,金慧琴,等.粗糙海面对电波传播的影响研究[J].无线电工程,2012,42(3):38-40.

[3] RICES O.Reflection of Electromagnetic Waves from Slightly Rough Surfaces[J].Communications on Pure and Applied Mathematics,1951(4):351-378.

[4] THORSOSE I.The Validity of the Kirchhoff Approximation for Rough Surface Scattering Using a Gaussian Roughness Spectrum[J].The Journal of the Acoustical Society of America,1988,83(1):78-92.

[5] TOPORKOV J V,BROWN G S.Numerical Simulations of Scattering from Time-varying,Randomly Rough Surfaces[J].IEEE Transactions on Geoscience and Remote Sensing,2000,38(4):1616-1625.

[6] 许鑫,朱安石,杨勇,等.基于FDTD方法的复杂目标RCS数值计算[J].无线电工程,2015,45(7):62-66.

[7] MIRET D,SORIANO G,SAILLARD M.Rigorous Simulations of Microwave Scattering from Finite Conductivity Two-dimensional Sea Surfaces at Low Grazing Angles[J].IEEE Transactions on Geoscience and Remote Sensing,2014,52(6):3150-3158.

[8] 杨伟.三维复杂粗糙海面电磁散射建模研究与特性分析[D].成都:电子科技大学,2012.

[9] YE H,JIN Y Q.A Hybrid Analytic-numerical Algorithm of Scattering from an Object above a Rough Surface[J].IEEE Transactions on Geoscience and Remote Sensing,2007,45(5):1174-1180.

[10] LI J,ZHANG M,FAN W,et al.Facet-based Investigation on Microwave Backscattering from Sea Surface with Breaking Waves:Sea Spikes and Sar Imaging[J].IEEE Transactions on Geoscience and Remote Sensing,2017,55(4):2313-2325.

[11] 陈锟山,李召良,刘玉.随机粗糙面的双站散射模型分析[J].北京航空航天大学学报,2015,41(10):1765-1776.

[12] MENG X,GUO L X,WEI Y W,et al.An Accelerated Ray Tracing Method Based on the Tsm for the RCS Prediction of 3-D Large-scale Dielectric Sea Surface[J].IEEE Antennas and Wireless Propagation Letters,2015(14):233-236.

[13] 陈珲.动态海面及其上目标复合电磁散射与多普勒谱研究[D].西安:西安电子科技大学,2012.

[14] MAMETSA H J,KOUDOGBO F,COMBES P F.Application of IEM and Radiative Transfer Formulations for Bistatic Scattering of Rough Surfaces[C]//IEEE International Geoscience and Remote Sensing Symposium,Toronto Canada,2002:662-664.

[15] WUT D,CHEN K S,SHI J,et al.A Study of an AIEM Model for Bistatic Scattering from Randomly Rough Surfaces[J].IEEE Transactions on Geoscience and Remote Sensing,2008,46(9):2584-2598.

[16] 沈明华,付强,卢再奇,等.基于多散射中心估计的飞机目标识别[J].信号处理,2006,22(4):605-608.

[17] 刘忠铁,马东立,楚亮.复杂飞行器目标强散射区求解及 RCS 减缩[J].系统工程与电子技术,2011,33(8):1694-1697.

[18] 文圣常,余宙文.海浪理论与计算原理[M].北京:科学出版社,1984.

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中图分类号:TN011.6

引用信息:

[1]刘旭波,杨润秋,齐聪慧等.超电大尺寸海面电磁散射计算的混合面元法研究[J].无线电工程,2019,49(11):975-979.

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