Title :
Modulating multicarriers with chirp for MIMO-SAR waveform diversity design
Author :
Kuoye Han ; Yanping Wang ; Xueming Peng ; Wen Hong
Author_Institution :
Sci. & Technol. on Microwave Imaging Lab., Beijing, China
Abstract :
In multiple-input multiple-output synthetic aperture radar (MIMO-SAR), the orthogonal waveform diversity design plays a critical role. In this paper, we design multiple orthogonal waveforms by applying the multiple subcarrier technique in digital communications to commonly-used chirp radar waveform with large time-bandwidth product and constant modulus, so that the orthogonality of subcarriers within a common frequency band and good properties of chirp waveform are sufficiently exploited. The detailed modulation and demodulation methods are presented and the application potentials of the new waveform in MIMO-SAR are investigated. The proposed waveform diversity design method has the advantages of implementation simplicity and easy integration with the conventional SAR processor. Semi-physical simulation with an Agilent arbitrary waveform generator (AWG) and a high-speed oscilloscope (OSC) verifies the scheme. The performance is also evaluated by theoretical analysis and simulation results.
Keywords :
MIMO communication; OFDM modulation; chirp modulation; demodulation; diversity reception; function generators; oscilloscopes; synthetic aperture radar; Agilent AWG; Agilent arbitrary waveform generator; MIMO-SAR; chirp radar waveform; constant modulus; demodulation methods; high-speed oscilloscope; multiple subcarrier technique; multiple-input multiple-output synthetic aperture radar; orthogonal waveform diversity design; semi-physical simulation; time-bandwidth product; Arrays; Chirp; Imaging; OFDM; Radar imaging; Transmitters; MIMO-SAR; OFDM; multicarriers; waveform diversity;
Conference_Titel :
Signal Processing, Communication and Computing (ICSPCC), 2013 IEEE International Conference on
Conference_Location :
KunMing
DOI :
10.1109/ICSPCC.2013.6664000