1. Butt, F. A. and M. Jalil, "An overview of electronic warfare in radar systems," International Conference on Technological Advances in Electrical, Electronics and Computer Engineering (TAEECE), 213-217, IEEE, May 2013.
doi:10.1109/taeece.2013.6557273 Google Scholar
2. Johnston, S. L., "World War 2 ECCM history," IEEE Int. Radar Conf. Rec., 5.2-5.7, May 1985. Google Scholar
3. Butt, F. A., I. H. Naqvi, and A. I. Najam, "Radar ECCM against deception jamming: A novel approach using bi-static and mono-static radars," 2012 15th International on Multitopic Conference (INMIC), 137–141, IEEE, December 2012.
doi:10.1109/inmic.2012.6511482 Google Scholar
4. Jackson, M. C., "The geometry of bi-static radar systems," IEE Proceedings, Vol. 133, Pt. F, 1986. Google Scholar
5. Guo, J. M.J. X. Li, and Q. Lv, "Survey on radar ECCM methods and trends in its development," International Conference on Radar, 1–4, October 2006.
doi:10.1109/icr.2006.343210 Google Scholar
6. Griffiths, H. D., "New directions in bistatic radar," IEEE Radar Conference 2008, RADAR'08, 1–1, IEEE, May 2008.
doi:10.1109/radar.2008.4721143 Google Scholar
7. Willis, N. J. and H. D. Griffiths, Advances in Bistatic Radar, SciTech Publishing Inc., Raleigh, NC, 2007. Google Scholar
8. Hack, D. E., L. K. Patton, and B. Himed, "Detection in passive MIMO radar networks," 2014 IEEE Radar Conference, 780-785, May 2014.
doi:10.1109/radar.2014.6875695 Google Scholar
9. Griffiths, H., "Developments in bistatic and networked radar," 2011 IEEE CIE International Conference on Radar (Radar), Vol. 1, 10–13, IEEE, October 2011.
doi:10.1109/cie-radar.2011.6159708 Google Scholar
10. Willis, N. J. and H. D. Griffiths, Advances in Bistatic Radar, SciTech Publishing Inc., Raleigh, NC, 2007. Google Scholar
11. Griffiths, H. D., "From a different perspective: Principles, practice and potential of bistatic radar," Proc. International Conference RADAR 2003, 1-7, Keynote Presentation, Adelaide, Australia, 2003.
doi:10.1109/radar.2003.1278701 Google Scholar
12. Griffiths, H. D., W. A. Al-Ashwal, K. D. Ward, R. J. A. Tough, C. J. Baker, and K. Woodbridge, "Measurement and modelling of bistatic radar sea clutter," IET Radar, Sonar & Navigation, Vol. 4, No. 2, 280-292, April 2010.
doi:10.1049/iet-rsn.2009.0124 Google Scholar
13. Haimovich, A. M., R. S. Blum, and L. J. Cimini, "MIMO radar with widely separated antennas," IEEE Signal Processing Magazine, Vol. 25, No. 1, 116-129, 2008.
doi:10.1109/msp.2008.4408448 Google Scholar
14. Robey, F. C., S. Coutts, D. Weikle, J. C. McHarg, and K. Cuomo, "MIMO radar theory and experimental results," 38th Asilomar Conference on Signals, Systems and Computers, Vol. 1, 300-304, 2004.
doi:10.1109/acssc.2004.1399141 Google Scholar
15. Bekkerman, I. and J. Tabrikian, "Target detection and localization using MIMO radars and sonars," IEEE Transactions on Signal Processing, Vol. 54, No. 10, 3873-3883, October 2006.
doi:10.1109/tsp.2006.879267 Google Scholar
16. Xu, L., J. Li, and P. Stoica, "Adaptive techniques for MIMO radar," 14th IEEE Workshop Sensor Array and Multi-channel Processing, 258-262, Waltham, MA, 2006.
doi:10.1109/sam.2006.1677199 Google Scholar
17. Liu, Y., S.-X. Gong, and D.-M. Fu, "Theoretic study of antenna scattering," ACTA Electronica Sinica, Vol. 33, No. 9, 2004. Google Scholar
18. Mahafza, B. R., Radar Systems Analysis and Design Using MATLAB, CRC Press, 2000. Google Scholar
19. Kassem, M. J. B. and A. Khenchaf, "Bistatic mapping radar BISAR," OCEANS 2003 Proceedings, Vol. 5, P2754-P2760, IEEE, 2003.
doi:10.1109/oceans.2003.1283032 Google Scholar
20. Principles of Modern Radar: Basic Principles, SciTech Pub., 2010. Google Scholar
21. Willis, N. J., Bistatic Radar, SciTech Publishing, 2005. Google Scholar
22. Teo, C. L., Bistatic radar system analysis and software development, Naval Postgraduate School, Monterey, CA, 2003. Google Scholar
23. Chatzigeorgiadis, F. and D. C. Jenn, "A MATLAB physical-optics RCS prediction code," IEEE Antennas and Propagation Magazine, Vol. 46, No. 4, 137-139, 2004. Google Scholar