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Principles of Modern Radar - Volume 2 1891121537

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17.10 References 817[20] Chetty, K., Smith, G., Guo, H., and Woodbridge, K., “Target Detection in High Clutter UsingPassive Bistatic WiFi <strong>Radar</strong>,” in Proceedings <strong>of</strong> IEEE <strong>Radar</strong> Conference, pp. 1–5, May 4–8,2009.[21] Falcone, P., Colone, F., Bongioanni, C., and Lombardo, P., “Experimental Results for OFDMWiFi-Based Passive Bistatic <strong>Radar</strong>,” IEEE Int. <strong>Radar</strong> Conference, Washington, DC, May10–14, 2010.[22] Cherniakov, M., Zeng, T., and Plakidis, E., “Galileo Signal-Based Bistatic Systemfor Avalanche Prediction,” in Proceedings IGARSS03, Toulouse, France, pp. 784–786,July 2003.[23] Cherniakov, M., Saini, R., Zuo, R., and Antoniou, M., “Space-Surface Bistatic SyntheticAperture <strong>Radar</strong> with Global Navigation Satellite System Transmitter <strong>of</strong> Opportunity—Experimental Results,” IET Proceedings on <strong>Radar</strong>, Sonar & Navigation, vol. 1, no. 6, pp.447–458, November 2007.[24] Cherniakov, M., Nezlin, D., and Kubin, K., “Air Target Detection via Bistatic <strong>Radar</strong> Basedon LEOS Communications System,” IEE Proceedings on <strong>Radar</strong>, Sonar and Navigation, vol.149, no. 1, pp. 33–38, 2002.[25] Cristallini, D., Caruso, M., Falcone, P., Langellotti, D., Bongioanni, C., Colone. F., Scafè, S.,and Lombardo, P., “Space-Based Passive <strong>Radar</strong> Enabled by the New Generation <strong>of</strong> GeostationaryBroadcast Satellites,” 2010 IEEE Aerospace Conference, Big Sky, Montana, March6–13, 2010.[26] Gill, L.P., Grenier, D., Chouinard, J.Y., ”Use <strong>of</strong> XM TM Radio Satellite Signal as a Source<strong>of</strong> Opportunity for Passive Coherent Location,” IET <strong>Radar</strong> Sonar Navigation, vol. 5, no. 5,pp. 536–544, 2011.[27] Morabito, A.N., Meyer, M.G., and Sahr, J.D., “Improved Computational Performance forDistributed Passive <strong>Radar</strong> Processing through Channelised Data,” IEE Proceedings on <strong>Radar</strong>,Sonar and Navigation, vol. 152, no. 3, pp.179–184, June 2005.[28] Langellotti, D., Colone, F., Bongioanni, C., and Lombardo, P., “Comparative Study <strong>of</strong> AmbiguityFunction Evaluation Algorithms for Passive <strong>Radar</strong>,” International <strong>Radar</strong> Symposium,Hamburg, Germany, September 9–11, 2009.[29] Colone, F., O’Hagan, D.W., Lombardo, P., and Baker, C.J., “A Multistage Processing Algorithmfor Disturbance Removal and Target Detection in Passive Bistatic <strong>Radar</strong>,” IEEETransactions on Aerospace and Electronic Systems, vol. 45, no. 2, pp. 698–721, April 2009.[30] Kulpa, K.S. and Czekaa, Z., “Masking Effect and Its Removal in PCL <strong>Radar</strong>,” IEE Proceedings<strong>Radar</strong> Sonar Navigation, vol. 152, no. 3, pp. 174–178, June 2005.[31] Axelsson, S.R.J., “Improved Clutter Suppression in Random Noise <strong>Radar</strong>,” in URSI 2005Commission F Symposium on Microwave Remote Sensing <strong>of</strong> the Earth, Oceans, Ice, andAtmosphere, April 2005.[32] Gunner, A., Temple, M.A., and Claypoole, Jr., R.J., “Direct-Path Filtering <strong>of</strong> DAB Waveformfrom PCL Receiver Target Channel,” Electronic Letters, vol. 39, no. 1, pp. 1005–1007, 2003.[33] Cardinali, R., Colone, F., Ferretti, C., and Lombardo, P., “Comparison <strong>of</strong> Clutter and MultipathCancellation Techniques for Passive <strong>Radar</strong>,” in IEEE <strong>Radar</strong> Conference, Boston, MA, March2007.[34] Colone, F., Cardinali, R., and Lombardo, P., “Cancellation <strong>of</strong> Clutter and Multipath in Passive<strong>Radar</strong> Using a Sequential Approach,” in IEEE 2006 <strong>Radar</strong> Conference, Verona, NY,pp. 393–399, April 24–27, 2006.[35] Haykin, S., Adaptive Filter Theory, 4th ed., Prentice Hall, Upper Saddle River, NJ, 2002.

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