Article Information  
Frequency Diversity Array for DOA Estimation

Keywords: Radar, Direction of Arrival, Frequency Diversity Array, Maximum Likelihood Estimate, Range

Mehran University Research Journal of Engineering & Technology

Volume 36 ,  Issue 4

NAUMAN ANWAR BAIG , MOHAMMAD BILAL MALIK   , MUHAMMAD ZEESHAN   ,

References
1. Chen, J., Zhao, H., Sun, X., and Liu, G., "Joint 2D Direction-of-Arrival and Range Estimation for Nonstationary Sources", International Journal of Antennas & Propagation, July, 2014
2. Lee, C.M., Yoon, K.S., Lee, J.H., and Lee, K.K., "Efficient Algorithm for Localising 3D Narrowband Multiple Sources", IEE Proceedings in Radar, Sonar and Navigation, Volume 148, No. 1, pp. 23-26, 2001.
3. Krim, H., and Viberg, M., "Two Decades of Array Signal Processing Research: The Parametric Approach", IEEE Signal Processing Magazine, Volume 13, No. 4, pp. 67-94, July, 1996.
4. Bekkerman, I., Ben-Gurion, and Tabrikian, J., "Target Detection and Localization Using MIMO Radars and Sonars", IEEE Transactions on Signal Processing, Volume 54, No. 10 , 2006.
5. Zhang, X., Huang, Y.P., Chen, C., Li, J., and Xu, D., "Reduced-Complexity Capon for Direction of Arrival Estimation in a Monostatic Multiple-Input Multiple- Output Radar", Radar, Sonar & Navigation, Volume 6, No. 8, pp. 796-801, October, 2012.
6. Chevalier, P., Ferréol, A., and Albera, L., "High- Resolution Direction Finding from Higher Order Statistics: The 2Q-MUSIC Algorithm", IEEE Transactions on Signal Processing, Volume 54, No. 8, pp. 2986-97, August, 2006.
7. Ober, P.B., Deprettere, E.F., and Van derVeen, A.J., "Efficient Methods to Compute Azimuth and Elevation in High Resolution DOA Estimation", International Conference on Acoustics, Speech, and Signal Processing, pp. 3349-3352, April, 1991.
8. Zhou, Q.C., Gao, H., and Wang, F., "A High Resolution DOA Estimating Method Without Estimating the Number of Sources", Progress in Electromagnetics Research-C, Volume 25, pp. 233–247, 2012.
9. Schell, S.V., and Gardner, W.A., "High Resolution Direction Finding", Elseveir Science Publishers, Volume 10, 1993.
10. Chevalier, P., Ferréol, A., and Albera, L., "High- Resolution Direction Finding From Higher Order Statistics: The 2Q-MUSIC AlgorithM", IEEE Transactions on Signal Processing, Volume 54, No. 8, August, 2006.
11. Skolnik, M., "Introduction to RADAR Systems", 3rd Edition, McGraw-Hill, New York, 2001.
12. Wang, Z., Sinha, A., Willett, P., and Bar-Shalom, Y., "Angle Estimation for Two Unresolved Targets with Monopulse Radar", IEEE Transactions on Aerospace and Electronic Systems, Volume 40, No. 3, July, 2004.
13. Jun, W., Jian, Y., and Xiaolin, Q., "A Practical Approach of Monopulse DOA Estimation for Multiple Unresolved Targets", IET International Radar Conference, 2009.
14. Blair, W.D., and Brandt-Pearce, M., "Monopulse DOA Estimation of Two Unresolved Rayleigh Targets", IEEE Transactions on Aerospace and Electronic Systems, Volume 37, No. 2, April, 2001.
15. Tullsson, B.E., "Monopulse Tracking of Rayleigh Targets: A Simple Approach", IEEE Transactions on Aerospace and Electronics Systems, Volume 27, No. 3, pp. 520-531, 1991.
16. Sherman, S.M., and Barton, D.K., "Monopulse Principles and Techniques", MA: Artech House, Dedham, 1984.
17. Swindlehurst, A.L., and Stoica, P., "Maximum Likelihood Methods in Radar Array Signal Processing", Proceedings of IEEE, Volume 86, No. 2, February, 1998.
18. Joe, C., Chen, Ralph, E.H., and Kung, Y., "Maximum- Likelihood Source Localization and Unknown Sensor Location Estimation for Wideband Signals in the Near- Field", IEEE Transactions on Signal Processing, Volume 50, No. 8, August, 2002.
19. Swerling, P., "Maximum Angular Accuracy of a Pulsed Search Radar", Proceedings of IRE, Volume 44, No. 9, pp. 1146-1155, September, 1956.
20. Farina, A., Gini, F., and Greco, M., "DOA Estimation by Exploiting the Amplitude Modulation Induced by Antenna Scanning", IEEE Transactions on Aerospace and Electronic Systems, Volume 38, No. 4, pp. 1276-1286, October, 2002.
21. Richards, M.A., "Fundamentals of Radar Signal Processing", McGraw Hill, 2005.
22. Antonik, P., Wicks, M.C., Grifûths, H.D., and Baker, C.J., "Frequency Diverse Array Radars", Proceedings of IEEE RADAR Conference, 2006.
23. Baizert, P., Hale, T.B., Temple, M.A., and Wicks, M.C., "Forward-Looking Radar GMTI Beneûts using a Linear Frequency Diverse Array", Electronics Letters, 26th October, 2006.
24. Wang, W.Q., and Shao, H., "A Flexible Phased-MIMO Array Antenna with Transmit Beamforming", International Journal of Antennas and Propagation, 2012.
25. Khan, W., Qureshi, I.M., Basit, A., and Zubair, M., "A Double Pulse MIMO Frequency Diverse Array Radar for Improved Range-Angle Localization of Target", Wireless Personal Communications, Volume 80, No. 3, February, 2015.
26. Farooq, J., Temple, M.A., and Saville, M.A., "Exploiting Frequency Diverse Array Processing to Improve SAR Image Resolution", IEEE Radar Conference, 2008.
27. Greco, M., Fortunati, S., and Gini, F., "Maximum Likelihood Covariance Matrix Estimation for Complex Elliptically Symmetric Distributions under Mismatched Conditions", Signal Processing, pp. 381-386, 2014
28. Kay, S.M., "Fundamentals of Statistical Signal Processing, Estimation Theory", Englewood Cliffs, NJ: Prentice- Hall, 1993.
29. Jones, A.M., "Frequency Diverse Array Receiver Architectures", MS Thesis, Department of Electrical Engineering and Computer Science ,Wright State University, 2007.