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Articles

Analysis of electromagnetic scattering from perfect electric conducting targets using improved characteristic basis function method and fast dipole method

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Pages 893-902 | Received 10 Dec 2013, Accepted 11 Feb 2014, Published online: 12 Mar 2014

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Xiaoqing Hu, Rushan Chen, Xiao Chen, Xin Liu, Hairong Zheng & Ye Li. (2015) Compressed representation of matrix decomposition algorithm-singular value decomposition for full-wave analysis microstrip problems. Journal of Electromagnetic Waves and Applications 29:6, pages 832-842.
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Wen-Yan Nie, Zhenzhen Chen & Chenlu Li. (2020) Principal Component Analysis Enhanced CBFM for Solving Monostatic Scattering Problems of Object. Principal Component Analysis Enhanced CBFM for Solving Monostatic Scattering Problems of Object.
Can Xia, Wanqing You & Yufa Sun. (2019) FAST CALCULATION OF MONOSTATIC RADAR CROSS SECTION OF CONDUCTING TARGETS USING HIERARCHICAL CHARACTERISTIC BASIS FUNCTION METHOD AND SINGULAR VALUE DECOMPOSITION. Progress In Electromagnetics Research Letters 81, pages 133-139.
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Wenyan Nie & Zhonggen Wang. (2018) Fast Computation of Monostatic RCS of Objects by Combing Characteristic Basis Function Method and Singular Value Decomposition. Fast Computation of Monostatic RCS of Objects by Combing Characteristic Basis Function Method and Singular Value Decomposition.
Wenyan Nie, Zhonggen Wang & Jie Zhu. (2017) Direct solution of electromagnetic scattering from perfect electric conducting targets by combing characteristic basis function method and hybrid ACA-FDM method. Journal of Computational Methods in Sciences and Engineering 16:4, pages 847-854.
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Wen-Yan Nie & Zhong-Gen Wang. (2016) SOLUTION FOR WIDE BAND SCATTERING PROBLEMS BY USING THE IMPROVED ULTRA-WIDE BAND CHARACTERISTIC BASIS FUNCTION METHOD. Progress In Electromagnetics Research Letters 58, pages 37-43.
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Wen-yan Nie & Zhong-gen Wang. (2016) Efficient Computation of Wideband RCS Using Singular Value Decomposition Enhanced Improved Ultrawideband Characteristic Basis Function Method. International Journal of Antennas and Propagation 2016, pages 1-6.
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