Title :
A new method of resolving multiple targets of low resolution radar
Author :
Jiang, Zhenglin ; Bao, Zheng
Author_Institution :
Nat. Key Lab. for Radar Signal Process., Xidian Univ., Xi´´an, China
Abstract :
In active low-resolution radar, longitudinal resolution usually is more than one hundred meters and as high as several hundreds meters. Due to the short distance between planes which fly in a group, ordinary low resolution radar cannot distinguish them in both distance and azimuth. If we use the technology of ISAR to resolve the difference among Doppler frequencies of the targets and obtain a fine resolution cross-cross image, we may separate them, but a long coherent processing time is needed. In this paper, we exploit the graphics sharpness rule to estimate the motion parameter for one dimensional cross-range images of low resolution radar and compensate them for translational motion. Since coherent processing must not be overlong, we adopt the method of super-resolution to improve the resolution. The experimental results of a group target show that the proposed approach is correct and effective
Keywords :
Doppler radar; FM radar; minimum entropy methods; motion compensation; radar imaging; radar resolution; radar tracking; synthetic aperture radar; time-frequency analysis; ISAR technology; RELAX algorithm; active low-resolution radar; coherent processing; fine resolution cross-cross image; graphics sharpness rule; group targets; linear FM; longitudinal resolution; motion parameter estimation; multiple targets resolution; one dimensional cross-range image; super-resolution; time-frequency analysis; translational motion compensation; Azimuth; Doppler radar; Frequency estimation; Graphics; Image resolution; Motion estimation; Parameter estimation; Radar imaging; Radar signal processing; Signal resolution;
Conference_Titel :
National Aerospace and Electronics Conference, 2000. NAECON 2000. Proceedings of the IEEE 2000
Conference_Location :
Dayton, OH
Print_ISBN :
0-7803-6262-4
DOI :
10.1109/NAECON.2000.894983