Title :
Sub-Array Processing for parameters estimate of embedded conducting cylinders
Author :
Meschino, Simone ; Pajewski, Lara ; Schettini, Giuseppe
Author_Institution :
Appl. Electron. Dept., Roma Tre Univ., Rome, Italy
fDate :
Sept. 30 2009-Oct. 2 2009
Abstract :
A hybrid electromagnetic-statistic approach for the detection and localization of buried perfectly-conducting circular cylinders is presented. The data used for simulating the scenario are produced by using the cylindrical wave approach (CWA) method. The inverse scattering problem is treated by means of a statistical detection technique. In particular, by the use of a SAP (sub-array processing) structure, it is possible to apply several algorithms of direction of arrival (DOA) estimation. By triangulating the DOAs, a set of crossings, condensed around the expected object locations, is obtained. To process the crossing pattern, we develop a statistical model for the crossings distribution, and employ hypothesis testing procedures to identify a collection of small windows containing targets. By defining a suitable threshold from a desired false alarm rate, and dividing the region in small windows it is possible to ascribe each window to the ground or to an object.
Keywords :
antenna theory; buried object detection; direction-of-arrival estimation; electromagnetic wave scattering; inverse problems; linear antenna arrays; parameter estimation; receiving antennas; statistical distributions; DOA estimation; buried perfectly-conducting circular cylinder detection; cylindrical wave approach method; direction of arrival estimation; embedded conducting cylinder; false alarm rate; hybrid electromagnetic-statistic approach; hypothesis testing procedures; inverse scattering problem; linear antenna array; parameter estimation; receiving antennas; statistical detection technique; statistical distribution model; subarray processing structure; Array signal processing; Buried object detection; Direction of arrival estimation; Engine cylinders; Inverse problems; Landmine detection; Parameter estimation; Partitioning algorithms; Scattering; Testing;
Conference_Titel :
Radar Conference, 2009. EuRAD 2009. European
Conference_Location :
Rome
Print_ISBN :
978-1-4244-4747-3