Wu Guanglong, Zhu Shouzheng, Huang Le, Liu Jingao, Yin Jieyi . An ocean echo signal simulation system for verification and calibration of FMICW high frequency ground wave radar[J]. Journal of Electronics & Information Technology, 2002, 24(5): 591-596.
Citation:
Wu Guanglong, Zhu Shouzheng, Huang Le, Liu Jingao, Yin Jieyi . An ocean echo signal simulation system for verification and calibration of FMICW high frequency ground wave radar[J]. Journal of Electronics & Information Technology, 2002, 24(5): 591-596.
Wu Guanglong, Zhu Shouzheng, Huang Le, Liu Jingao, Yin Jieyi . An ocean echo signal simulation system for verification and calibration of FMICW high frequency ground wave radar[J]. Journal of Electronics & Information Technology, 2002, 24(5): 591-596.
Citation:
Wu Guanglong, Zhu Shouzheng, Huang Le, Liu Jingao, Yin Jieyi . An ocean echo signal simulation system for verification and calibration of FMICW high frequency ground wave radar[J]. Journal of Electronics & Information Technology, 2002, 24(5): 591-596.
An ocean echo signal simulation system for verification and calibration of FMICW high frequency ground wave radar is presented in this paper. It is based on the principle of FMICW radar and inversion of Bragg-Doppler(B-D) spectrum. The ocean echo signals are simulated with the digital synthesis techniques. They are used for calibration of the sea-state ocean radar. The system has been tested on an FMICW radar system, the surveillance results are favorably anticipated.
S.K. Srivastava, J. Walsh, An analysis of the second-order doppler return from the ocean surface.IEEE J. of Oceanic Engineering, 1985, 10(4), 443-445.[2]R. Khan, B. Gamberg, Target detection and tracking with a high frequency ground wave radar,IEEE J. of Oceanic Engineering, 1994, 19(4), 540-548.[3]R.H. Khan, Ocean-clutter model for high-frequency radar, IEEE J. of Oceanic Engineering, 1991,16(2), 181-188.[4]R. Howell, J. Walsh, Measurement of ocean wave spectra using narrow-beam HF radar, IEEE J.of Oceanic Engineering, 1993,18(3), 296-305.