Abstract
Special attention has been devoted to multi-input multi-output (MIMO) synthetic aperture radar (SAR) systems in recent years. The applications of MIMO SAR systems which involve 3D imaging, highresolution wide-swath remote sensing, and multi-baseline interferometry are seriously limited to the orthogonal waveforms. Although orthogonal frequency division multiplexing (OFDM) chirp waveforms can be used for MIMO SAR systems to avoid intra-pulse interferences, there is a small frequency shift between the transmitted OFDM pulses. This vulnerable shift, which can not only affect the waveform orthogonality, but also introduce residual phase error, renders the OFDM waveforms impractical. In this paper, an improved OFDM chirp waveform which works without the mentioned shift is presented, along with the novel modulation and efficient demodulation procedures. Comparison between the improved and the conventional OFDM chirp waveforms is detailed. The influence of random noise, quantization error, and Doppler shift on the orthogonality of OFDM waveform is also investigated in this paper. Theoretical analysis and simulation results illustrate the feasibility of this waveform scheme.
Similar content being viewed by others
References
Currie A, Brown M A. Wide-swath SAR. In: Proceedings of IEE Proceedings F on Radar Signal Process, 1992. 122–135
Gebert N, Krieger G, Moreira A. Digital beamforming on receive: techniques and optimization strategies for highresolution wideswath SAR imaging. IEEE Trans Aerosp Electron Syst, 2009, 45: 564–592
Fornaro G, Serafino F, Soldovieri F. Three-dimensional focusing with multipass SAR data. IEEE Trans Geosci Remote Sens, 2003, 41: 507–517
Mittermayer J, Martinez J M. Analysis of range ambiguity suppression in SAR by up and down chirp modulation for point and distributed targets. IGARSS Proc, 2003, 6: 4077–4079
Krieger G, Younis M, Huber S, et al. MIMO-SAR and the orthogonality confusion. In: Proceedings of IEEE International Geoscience and Remote Sensing Symposium (IGARSS), Munich, 2012. 1533–1536
Kim J H, Ossowska A, Wiesbeck W. Investigation of MIMO SAR for interferometry. In: Proceedings of European Radar Conference, Munich, 2007. 51–54
Wang W Q. Space-time coding MIMO-OFDM SAR for high-resolution imaging. IEEE Trans Geosci Remote Sens, 2011, 49: 3094–3104
Wang J, Liang X D, Chen L Y. MIMO SAR system using digital implemented OFDM waveforms. In: Proceedings of IEEE International Geoscience and Remote Sensing Symposium (IGARSS), Munich, 2012. 7428–7431
Kim J H, Younis M, Moreira A, et al. A novel OFDM chirp waveform scheme for use of multiple transmitters in SAR. IEEE Geosci Remote Sens Lett, 2012, 99: 1–5
Krieger G, Gebert N, Moreira A. Unambiguous SAR signal reconstruction from nonuniform displaced phase center sampling. IEEE Geosci Remote Sens Lett, 2004 1: 260–264
Garmatyuk D, Brenneman M. Adaptive multicarrier OFDM SAR signal processing. IEEE Trans Geosci Remote Sens, 2011, 49: 3780–3790
Manolakis D G, Proakis J G. Digital Signal Processing. New York: Prentice Hall, 2006
Soumekh M. Synthetic Aperture Radar Signal Processing with MATLAB Algorithms. New York: Wiley, 1999
Meta A, Hoogeboom P, Ligthart P L. Signal Processing for FMCW SAR. IEEE Trans Geosci Remote Sens, 2007, 45: 3519–3532
Author information
Authors and Affiliations
Corresponding author
Rights and permissions
About this article
Cite this article
Wang, J., Liang, X., Ding, C. et al. An improved OFDM chirp waveform used for MIMO SAR system. Sci. China Inf. Sci. 57, 1–9 (2014). https://doi.org/10.1007/s11432-013-4966-7
Received:
Accepted:
Published:
Issue Date:
DOI: https://doi.org/10.1007/s11432-013-4966-7