DocumentCode :
3395529
Title :
Hybrid-LFM signal design and detection performance analysis for formation-flying satellite radar system
Author :
Zong, Zhulin ; Hu, Jianhao ; Zhu, Lidong ; Jia, Haitao
fYear :
2011
fDate :
17-19 Aug. 2011
Firstpage :
1074
Lastpage :
1078
Abstract :
Formation-flying satellite radars, as a kind of MIMO radars with widely-separated antennas, is a new technique developed recently. It offers the potential for diversity gain and spatial resolution gain through transmitting the orthogonal waveforms. In order to obtain diversity gain and spatial resolution gain and improve the detection performance, a hybrid-LFM signal for formation-flying satellite radar is proposed in this paper. The hybrid-LFM signal is composed of several sub-pulses with different frequency slope. In this model, the bandwidth of each sub-pulse and the frequency slope interval are important. Firstly, we investigate the signal processing of satellites´ echo and present an efficient implementation of formation-flying satellite radar system. Then, the orthogonal performance of the hybrid-LFM signals and the detection performance of formation-flying satellite radar system are analyzed. In the end, we draw the conclusion from simulations that not only the Hybrid-LFM signals have good orthogonal performance, but also the formation-flying satellite radar system with hybrid-LFM signals can obtain better detection performance than that with OFDM-LFM signals.
Keywords :
MIMO radar; OFDM modulation; airborne radar; artificial satellites; diversity reception; echo suppression; radar detection; radar resolution; satellite antennas; MIMO radar; OFDM-LFM signal; diversity gain; formation-flying satellite radar system; frequency slope interval; hybrid-LFM signal design; hybrid-LFM signal detection performance analysis; orthogonal waveform; satellite echo; signal processing; spatial resolution gain; subpulse bandwidth; widely-separated antenna; Doppler radar; Matched filters; OFDM; Radar detection; Satellites; Spaceborne radar; Formation-flying satellite; OFDM-LFM; detection performance; orthogonal waveforms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications and Networking in China (CHINACOM), 2011 6th International ICST Conference on
Conference_Location :
Harbin
Print_ISBN :
978-1-4577-0100-9
Type :
conf
DOI :
10.1109/ChinaCom.2011.6158315
Filename :
6158315
Link To Document :
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