PhotonIcs and Electromagnetics Research Symposium,
also known as Progress In Electromagnetics Research Symposium
PIERS Proceedings
Published: 2015-07-09
Rapid Echo Simulation for One-stationary Bistatic SAR Based on FFT and Subaperture Processing
By
Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)1429-1435
Abstract
In this study, a rapid echo simulation method based on fast Fourier transform (FFT) and subaperture processing for the one-stationary bistatic synthetic aperture radar (OS- BSAR) is presented. First, the OSBSAR geometry is built in elliptical polar coordinate, and then the scene is divided into several equidistant elliptical rings. Based on the equivalent scat- terer model, the approximate SAR system transfer function is derived, thus each pulse echo is calculated by the convolution of the transmitted signal and transfer function using the FFT. To further improve the simulation efficiency, the subaperture and subscene processing are used. The transfer function for the same subaperture pulses is calculated by the weighted sum of all the subscene equivalent scattering coefficient in the same equidistant elliptical ring using the FFT. Implementation of the proposed method is discussed. Simulation results are given to prove its validity.
Citation
Dao Xiang An, Xiaotao Huang, Hongtu Xie, and Zhi-Min Zhou, "Rapid Echo Simulation for One-stationary Bistatic SAR Based on FFT and Subaperture Processing," Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)1429-1435
References

1. Xie, H. T., D. X. An, X. T. Huang, X. Y. Li, and Z. M. Zhou, "Fast factorised backprojection algorithm in elliptical polar coordinate for one-stationary bistatic very high frequency/ultrahigh frequency ultra-wideband synthetic aperture radar with arbitrary motion," IET Radar, Sonar & Navigation, Vol. 8, No. 8, 946-956, October 2014.
doi:10.1049/iet-rsn.2012.0350        Google Scholar

2. Xie, H. T., D. X. An, X. T. Huang, and Z. M. Zhou, "Fast time-domain imaging in elliptical polar coordinate for general bistatic VHF/UHF ultra-wideband SAR with arbitrary motion," IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, Vol. 8, No. 2, 879-895, February 2015.
doi:10.1109/jstars.2014.2347413        Google Scholar

3. Henke, D., A. Barmettler, and E. Meier, "Bistatic experiment with the UWB-CARABAS sensor --- First results and prospects of future applications," Proc. IGARSS, 234-237, Capetown, South Africa, 2009.
doi:10.1109/igarss.2009.5418051        Google Scholar

4. Franceschetti, G., M. Migliaccio, D. Riccio, and G. Schirinzi, "SARAS: A synthetic aperture radar (SAR) raw signal simulator," IEEE Transactions on Geoscience and Remote Sensing, Vol. 30, No. 1, 110-123, 1992.
doi:10.1109/36.124221        Google Scholar

5. Zhang, M., Y. W. Zhao, Y. Zhao, and H. Chen, "A bistatic synthetic aperture radar imagery simulation of maritime scene using the extended nonlinear chirp scaling algorithm," IEEE Transactions on Aerospace and Electronic Systems, Vol. 49, No. 3, 2046-2054, July 2013.
doi:10.1109/taes.2013.6558038        Google Scholar

6. Franceschetti, G., A. Iodice, A. Natale, and D. Riccio, "Bistatic SAR simulation time and frequency domain approaches," Proc. DSP, 1-7, Corfu, Greece, 2011.        Google Scholar

7. Qiu, X. L., D. H. Hu, L. J. Zhou, and C. B. Ding, "A bistatic SAR raw data simulator based on inverse ω-k algorithm," IEEE Transactions on Geoscience and Remote Sensing, Vol. 48, No. 3, 1540-1547, March 2010.
doi:10.1109/tgrs.2009.2032776        Google Scholar

8. Wen, L. and T. Zeng, "A sub-aperture based SAR raw signal generation method," Proc. IET International Radar Conference, 89-92, Guilin, China, 2009.
doi:10.1049/cp.2009.0125        Google Scholar