1. Nanzer, J., Microwave and Millimeter-wave Remote Sensing for Security Applications, Artech House, 2012.
2. Amin, M. G., Through-the-Wall Radar Imaging, CRC Press, 2011.
3. Zoughi, R., Microwave Non-destructive Testing and Evaluation, Kluwer Academic, 2000.
doi:10.1007/978-94-015-1303-6
4. Vorst, A. V., A. Rosen, and Y. Kotsuka, RF/Microwave Interaction with Biological Tissues, Wiley, 2006.
5. Nikolova, N. K., "Microwave biomedical imaging," Wiley Encyclopedia of Electrical and Electronics Engineering, 1-22, published on-line Apr. 25, 2014. Google Scholar
6. Pastorino, M., Microwave Imaging, John Wiley & Sons, 2010.
doi:10.1002/9780470602492.ch1
7. Caorsi, S., G. L. Gragnani, and M. Pastorino, "An electromagnetic approach using a multi-illumination technique," IEEE Trans. Biomed. Eng., Vol. 41, No. 4, 406-409, Apr. 1994.
doi:10.1109/10.284973 Google Scholar
8. Tseng, C.-H. and T.-H. Chu, "Improvement of quasi-monostatic frequency-swept microwave imaging of conducting objects using illumination diversity technique," IEEE Trans. Antennas Propag., Vol. 53, No. 1, 305-312, Jan. 2005.
doi:10.1109/TAP.2004.838787 Google Scholar
9. Helaoui, L., J. Bel Hadj Tahar, and F. Choubani, "Multi-source illumination approach for buried objects exploration," 2008 2nd Int. Conf. Dig. Soc., 146-149, Sainte Luce, Feb. 2008. Google Scholar
10. Zhao, Y., W. Shao, and G. Wang, "UWB microwave imaging for early breast cancer detection: Effect of two synthetic antenna array configurations," 2004 IEEE Int. Conf. Syst., Man and Cybern., Vol. 5, 4468-4473, Oct. 2004. Google Scholar
11. Meaney, P. M., M. W. Fanning, D. Li, S. P. Poplack, and K. D. Paulsen, "A clinical prototype for active microwave imaging of the breast," IEEE Trans. on Microwave Theory and Tecnniques, Vol. 48, No. 11, 1841-1853, Nov. 2000. Google Scholar
12. Zakaria, A., C. Gilmore, and J. LoVetri, "Finite-element contrast source inversion method for microwave imaging," Inverse Problems, Vol. 26, 115010, 2010.
doi:10.1088/0266-5611/26/11/115010 Google Scholar
13. Mojabi, P., M. Ostadrahimi, L. Shafai, and J. LoVetri, "Microwave tomography techniques and algorithms: A review," Antenna Technology and Applied Electromagnetics (ANTEM), 1-4, Toulouse, France, Jun. 2012. Google Scholar
14. Semenov, S. Y., R. H. Svenson, A. E. Bulyshev, A. E. Souvorov, A. G. Nazarov, Y. E. Sizov, V. G. Posukh, A. V. Pavlovsky, P. N. Repin, and G. P., "Spatial resolution of microwave tomography for detection of myocardial ischemia and infarction --- Experimental study on two-dimensional models," IEEE Trans. on Microwave Theory and Tecnniques, Vol. 48, No. 4, 538-544, Apr. 2000.
doi:10.1109/22.842025 Google Scholar
15. Gilmore, C., P. Mojabi, A. Zakaria, S. Pistorius, and J. LoVetri, "On super-resolution with an experimental microwave tomography system," IEEE Antennas and Wireless Propag. Lett., Vol. 9, 393-396, 2010.
doi:10.1109/LAWP.2010.2049471 Google Scholar
16. Klemm, M., I. J. Craddock, J. A. Leendertz, A. Preece, and R. Benjamin, "Radar-based breast cancer detection using a hemispherical antenna array --- Experimental results," IEEE Trans. Antennas Propag., Vol. 57, No. 6, 1692-1704, Jun. 2009.
doi:10.1109/TAP.2009.2019856 Google Scholar
17. Donelli, M., I. Craddock, D. Gibbins, and M. Sarafianou, "A three-dimensional time domain microwave imaging method for breast cancer detection based on an evolutionary algorithm," Progress In Electromagnetics Research, Vol. 18, 179-195, 2011.
doi:10.2528/PIERM11040903 Google Scholar
18. Klemm, M., J. A. Leendertz, D. Gibbins, I. J. Craddock, A. Preece, and R. Benjamin, "Microwave radar-based breast cancer detection: Imaging in inhomogeneous breast phantoms," IEEE Antennas and Wireless Propag. Lett., Vol. 8, 1349-1352, 2009.
doi:10.1109/LAWP.2009.2036748 Google Scholar
19. Rocca, P., M. Donelli, G. L. Gragnani, and A. Massa, "Iterative multi-resolution retrieval of non-measurable equivalent currents for the imaging of dielectric objects," Inverse Problems, Vol. 25, No. 055004, 1-15, 2009. Google Scholar
20. Viani, F., M. Donelli, P. Rocca, R. Azaro, and A. Massa, "A multi-resolution three-dimensional approach based on SVM for breast cancer detection," 24th International Review of Progress in Applied Computational Electromagnetics, 479-482, ACES, Niagara Falls, Canada, 2008. Google Scholar
21. Donelli, M., D. Franceschini, A. Massa, M. Pastorino, and A. Zanetti, "Multi-resolution iterative inversion of real inhomogeneous targets," Inverse Problem, Vol. 21, No. 6, S51-S63, 2005.
doi:10.1088/0266-5611/21/6/S05 Google Scholar
22. Tu, S., J. J. McCombe, D. S. Shumakov, and N. K. Nikolova, "Fast quantitative microwave imaging with resolvent kernel extracted from measurements," Inverse Problems, Vol. 31, No. 045007, 1-33, 2015. Google Scholar
23. Ravan, M., R. K. Amineh, and N. K. Nikolova, "Two-dimensional near-field microwave holography," Inverse Problems, Vol. 26, No. 5, 055011, May 2010.
doi:10.1088/0266-5611/26/5/055011 Google Scholar
24. Sheen, D. M., D. L. McMakin, and T. E. Hall, "Three-dimensional millimeter-wave imaging for concealed weapon detection," IEEE Trans. on Microwave Theory and Techniques, Vol. 49, No. 9, 1581-1592, Sep. 2001.
doi:10.1109/22.942570 Google Scholar
25. Fritze, M., B. M. Tyrell, D. K. Astolfi, R. D. Lambert, D. W. Yost, A. R. Forte, S. G. Cann, and B. D. Wheeler, "Subwavelength optical lithography with phase-shift photomasks," Lincoln Laboratory Journal, Vol. 14, No. 2, 237-250, 2003. Google Scholar
26. Wong, A. K.-K., Resolution Enhancement Techniques in Optical Lithography, SPIE, 2001.
doi:10.1117/3.401208
27. Deng, C., Y. Li, Z. Zhang, and Z. Feng, "A hemispherical 3-D null steering antenna for circular polarization," IEEE Antennas and Wireless Propag. Lett., Vol. 14, 803-806, 2015.
doi:10.1109/LAWP.2014.2382107 Google Scholar
28. Sun, C., A. Hirata, T. Ohira, and N. C. Karmakar, "Fast beamforming of electronically steerable parasitic array radiator antennas: Theory and experiment," IEEE Trans. Antennas Propag., Vol. 52, No. 7, 1819-1832, Jul. 2004.
doi:10.1109/TAP.2004.831314 Google Scholar
29. FEKO Suite 6.3 EM Software & Systems, Inc., USA www.feko.info, . Google Scholar
30. Shumakov, D. S., A. S. Beaverstone, D. Tajik, and N. K. Nikolova, "Experimental investigation of axial-null and axial-peak illumination schemes in microwave imaging," IEEE AP-S/URSI Int. Symp. on Antennas and Propag., Fajardo, Puerto Rico, Jun. 2016. Google Scholar
31. Wilson, R., "Propagation losses through common building materials: 2.4 GHz vs. 5 GHz,", E10589 Magis Networks, Inc., 1-27, Aug. 2002. Google Scholar
32. Jenks, C. H. J., "Dielectric pyramid antenna for GPR applications," 10th European Conf. on Antennas and Propag. (EuCAP), 1-3, Apr. 2016.
doi:10.1109/EuCAP.2016.7481679 Google Scholar