Title :
Eliminating ghost images in high-range resolution profiles for stepped-frequency train of linear frequency modulation pulses
Author :
Liu, Yanbing ; Meng, Hsiang-Yun ; Zhang, Haijun ; Wang, Xiongfei
Author_Institution :
Dept. of Electron. Eng., Tsinghua Univ., Beijing, China
Abstract :
In modern radar systems, using stepped-frequency pulse train is an effective approach to achieve high-range resolution (HRR) with narrow instantaneous bandwidth and low system complexity. However, if the parameters of stepped-frequency (SF) radar (such as single pulse bandwidth, frequency step size and sampling instant) are not prudently designed, `ghost image` phenomenon (also called range ambiguity in some literature) will corrupt the synthetic HRR profiles. The relationship between parameters of the SF radar and the ghost images is provided analytically. A new synthetic range profiling algorithm is developed to generate HRR profiles without ghost images by using the least-squares (LS) estimation. For targets with negligible radial velocities, the new LS profiling algorithm can eliminate the ghost images successfully, and introduces less signal-to-noise ratio loss. With this algorithm, the restriction on the frequency step size is less rigid than the traditional unambiguous criterion. Consequently, a higher range resolution could be obtained. Simulations and field experimental results are also presented.
Keywords :
frequency modulation; image resolution; least squares approximations; radar imaging; ghost image elimination; high-range image resolution; least-squares estimation; linear frequency modulation pulse stepped-frequency train; radar systems; signal-to-noise ratio loss; stepped-frequency pulse train; stepped-frequency radar; synthetic range profiling algorithm;
Journal_Title :
Radar, Sonar & Navigation, IET
DOI :
10.1049/iet-rsn.2008.0033