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Doppler Beam Sharpening for Arc Turning Flying
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作者 Zhang Zhizhong and Dai JianhuaNanjing Research Institute of Electronic Technology P.O. Box 1315, Nanjing 210013, China 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 1992年第2期27-37,共11页
The signal processing and error analysis of arc turning flying for Doppler beam sharping (DBS) are described in the paper. As a sort of synthetic aperture radar, DBS is different from strip or spotlight mapping. The a... The signal processing and error analysis of arc turning flying for Doppler beam sharping (DBS) are described in the paper. As a sort of synthetic aperture radar, DBS is different from strip or spotlight mapping. The analytical expressions of DBS processing for both the inside arc turning and outside arc turning flying are given. The computer simulation of arc turning flying with an acceleration of 3g was performed on an IBM-PC. The results showed that the error of arc turning flying of DBS can be made negligibly small. 展开更多
关键词 doppler beam sharpening Synthetic aperture radar.
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DBS imaging based on Keystone transform 被引量:1
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作者 Jing Tian Wei Cui +1 位作者 Lin Ma Siliang Wu 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2012年第3期342-348,共7页
To correct the range walk through resolution cell in Doppler beam sharpening (DBS) imaging, a new DBS imaging algorithm based on Keystone transform is proposed. Without the exact values of the movement parameters an... To correct the range walk through resolution cell in Doppler beam sharpening (DBS) imaging, a new DBS imaging algorithm based on Keystone transform is proposed. Without the exact values of the movement parameters and the look angle of the radar platform in the multi-targets environment, a linear trans- form on the received data is employed to correct different range walk values accurately under the condition of Doppler frequency ambiguity in this algorithm. This method can realize the cohe- rent integration in azimuth dimension and improve the azimuth resolution. In order to reduce the computational burden, a fast implementation of Keystone transform is used. Theoretical anal- ysis and simulation results demonstrate the effectiveness of the new algorithm. And through comparing the computational load of the fast implementation with several other algorithms, the real-time processing ability of the proposed algorithm is superior to that of other algorithms. 展开更多
关键词 doppler beam sharpening (DBS) Keystone transform range walk coherent integration.
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