Ender, J.H.G., “Signal theoretical aspects of bistatic SAR”. IGARSS, Vol: 3, pp. 1438–1441, 2003. Loffeld, O., Nies, H., et al., “Models and useful relations for Bistatic SAR
Loffeld, O., Nies, H., et al., “Models and useful relations for Bistatic SAR Processing”. IEEE Trans. on geoscience and remote sensing., Vol: 42, No: 10, pp. 2031-2038, 2004.
Walterscheid, I., Brenner, A., Ender, J., “Results on bistatic synthetic aperture radar”, IEE Electronics Letters, Vol: 40, No: 9, pp. 1224-1225, 2004.
Moccia, A., Chiacchio, N., and Capone, A., “Spaceborne bistatic synthetic aperture radar for remote sensing applications”, Int. J. of Remote Sensing, Vol: 21, No: 18, pp. 3395-3414, 2000.
Moccia, A., Rufino, G., D’Errico, et al., “BISSAT: a bistatic SAR for earth observation”, IGARSS, pp. 2628-2630, 2002.
Moccia, A., Salzillo, G., D’Errico, M., Rufino, G., and Alberti, G., “Performance of spaceborne bistatic synthetic aperture radar”, IEEE Trans. on aerospace and electronic systems, Vol: 41, No: 4, pp. 1383-1393, 2005.
Zeng, T., Cherniakov, M., and Long T., “Generalized approach to resolution analysis in BSAR”, IEEE Trans. on aerospace and electronic systems, Vol: 41, No: 2, pp. 461-473, 2005.
Cherniakov, M., Zeng, T., Plakidis, E., “Ambiguity function for bistatic SAR and its application in SS-BSAR performance analysis”, International Conference RADAR, pp. 343-348, 2003.
Cardillo, G.P., “On the use of the gradient to determine bistatic SAR resolution”, AP-S International Symposium, Vol: 2, pp. 1032-1035, 1990.
GENERAL PROPERTIES OF AIRBORNE BISTATIC SAR
Year 2008,
Volume: 8 Issue: 1, 557 - 561, 02.01.2012
Ender, J.H.G., “Signal theoretical aspects of bistatic SAR”. IGARSS, Vol: 3, pp. 1438–1441, 2003. Loffeld, O., Nies, H., et al., “Models and useful relations for Bistatic SAR
Loffeld, O., Nies, H., et al., “Models and useful relations for Bistatic SAR Processing”. IEEE Trans. on geoscience and remote sensing., Vol: 42, No: 10, pp. 2031-2038, 2004.
Walterscheid, I., Brenner, A., Ender, J., “Results on bistatic synthetic aperture radar”, IEE Electronics Letters, Vol: 40, No: 9, pp. 1224-1225, 2004.
Moccia, A., Chiacchio, N., and Capone, A., “Spaceborne bistatic synthetic aperture radar for remote sensing applications”, Int. J. of Remote Sensing, Vol: 21, No: 18, pp. 3395-3414, 2000.
Moccia, A., Rufino, G., D’Errico, et al., “BISSAT: a bistatic SAR for earth observation”, IGARSS, pp. 2628-2630, 2002.
Moccia, A., Salzillo, G., D’Errico, M., Rufino, G., and Alberti, G., “Performance of spaceborne bistatic synthetic aperture radar”, IEEE Trans. on aerospace and electronic systems, Vol: 41, No: 4, pp. 1383-1393, 2005.
Zeng, T., Cherniakov, M., and Long T., “Generalized approach to resolution analysis in BSAR”, IEEE Trans. on aerospace and electronic systems, Vol: 41, No: 2, pp. 461-473, 2005.
Cherniakov, M., Zeng, T., Plakidis, E., “Ambiguity function for bistatic SAR and its application in SS-BSAR performance analysis”, International Conference RADAR, pp. 343-348, 2003.
Cardillo, G.P., “On the use of the gradient to determine bistatic SAR resolution”, AP-S International Symposium, Vol: 2, pp. 1032-1035, 1990.
Yang, Y., & Pı, Y. (2012). GENERAL PROPERTIES OF AIRBORNE BISTATIC SAR. IU-Journal of Electrical & Electronics Engineering, 8(1), 557-561.
AMA
Yang Y, Pı Y. GENERAL PROPERTIES OF AIRBORNE BISTATIC SAR. IU-Journal of Electrical & Electronics Engineering. January 2012;8(1):557-561.
Chicago
Yang, Yonghong, and Yiming Pı. “GENERAL PROPERTIES OF AIRBORNE BISTATIC SAR”. IU-Journal of Electrical & Electronics Engineering 8, no. 1 (January 2012): 557-61.
EndNote
Yang Y, Pı Y (January 1, 2012) GENERAL PROPERTIES OF AIRBORNE BISTATIC SAR. IU-Journal of Electrical & Electronics Engineering 8 1 557–561.
IEEE
Y. Yang and Y. Pı, “GENERAL PROPERTIES OF AIRBORNE BISTATIC SAR”, IU-Journal of Electrical & Electronics Engineering, vol. 8, no. 1, pp. 557–561, 2012.