朱岱寅

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招生学科专业:
信息与通信工程 -- 【招收博士、硕士研究生】 -- 电子信息工程学院
电子信息 -- 【招收博士、硕士研究生】 -- 电子信息工程学院

毕业院校:南京航空航天大学

学历:南京航空航天大学

学位:工学博士学位

所在单位:电子信息工程学院

办公地点:电子信息工程学院318办公室

联系方式:zhudy@nuaa.edu.cn, 025-84892410(Tel), 2843602904(qq)

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High-resolution spotlight spaceborne SAR focusing via modified-SVDS and deramping-based approach

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所属单位:电子信息工程学院

发表刊物:IET RADAR SONAR AND NAVIGATION

关键字:synthetic aperture radar singular value decomposition radar imaging spaceborne radar curved orbit modified singular value decomposition Stolt deramping-based approach modified SVDS azimuth spectral aliasing problem azimuth resolutions high-resolution spotlight spaceborne SAR focusing fine resolution spaceborne radar imaging synthetic aperture radar imaging numerical differentiation

摘要:Fine resolution spaceborne spotlight synthetic aperture radar (SAR) imaging is typically affected by the problems of curved orbit and azimuth spectral aliasing, especially when the resolution achieves the decimetre level. In order to overcome these difficulties, a method is proposed here, which consists of the modified singular value decomposition Stolt (SVDS) and the deramping-based approach. The modified SVDS is designed to properly handle the influence induced by curved orbit, and the deramping-based approach is utilised to solve the azimuth spectral aliasing problem. The modified SVDS is derived from the original SVDS by further taking the singular value into consideration, which is more concise and efficient. In addition, the deramping-based approach is combined with numerical differentiation so as to accommodate the situation of curved orbit. The proposed method has smaller phase error and performs better than the generalised omega K method when resolution achieves decimetre level. Experiments carried out on point target simulation validate the effectiveness of the presented method. With focused scene size of 4 by 3 km, the range and azimuth resolutions can achieve 0.15 and 0.14 m, respectively.

ISSN号:1751-8784

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发表时间:2019-10-01

合写作者:Qian, Yulei

通讯作者:朱岱寅