Title :
A new ISAR range alignment method via minimum tsallis entropy
Author :
Hu Moufa ; Gao Lei ; Zhang Zhiyong
Author_Institution :
State Key Lab. of Complex Electromagn. Environ. Effects on Electron. & Inf. Syst., Luoyang, China
Abstract :
Motion compensation is very important for Inverse synthetic aperture radar (ISAR) imaging while the imaging quality is directly dependent on its performance. Range alignment (envelope alignment) is the key procedure of motion compensation. The nonextensive entropy, known as Tsallis entropy, is introduced into ISAR range alignment because of the correlation between adjacent one-dimensional range profile (or long time memory characteristic). Firstly, the principle of range alignment method via minimum Shannon entropy (RAMSE) was summarized. Based on this, a new adjacent range profile alignment method was given via minimum Tsallis entropy (RAMTE). Further, in order to reduce the accumulation of alignment error and jump error, the modified RAMTE (mRAMTE) was presented using accumulation range profile alignment and smooth filter. Based on the criterion of minimum Tsallis entropy, mRAMTE could reduce the alignment error into 1/8 range resolution cell by data interpolation. Simulation results and experiments show that mRAMTE can effectively compensate range walk caused by target motion. And it was also shown that the alignment performance of mRAMTE is better than RAMSE.
Keywords :
entropy; interpolation; radar imaging; synthetic aperture radar; ISAR imaging; ISAR range alignment method; RAMSE; Tsallis entropy; adjacent onedimensional range profile; alignment error; data interpolation; imaging quality; inverse synthetic aperture radar; jump error; mRAMTE; memory characteristic; minimum Shannon entropy; motion compensation; nonextensive entropy; range alignment method; smooth filter; target motion; Entropy; Imaging; Motion compensation; Radar imaging; Scattering; Vectors; Inverse Synthetic Aperture Radar(ISAR) imaging; Minimum entropy; Range Alignment; Shannon entropy; Tsallis entropy;
Conference_Titel :
Microwave Technology & Computational Electromagnetics (ICMTCE), 2013 IEEE International Conference on
Conference_Location :
Qingdao
DOI :
10.1109/ICMTCE.2013.6812493