Title :
Design on return signal simulator of scatterometer and method of generating its signal
Author :
Xiaohui, Zhang ; Wei, Guo ; Heguang, Liu
Author_Institution :
Center for Space Sci. & Appl. Res., Acad. Sinica, Beijing, China
Abstract :
The return signal simulator (RSS) of the Chinese spaceborne scatterometer is designed in order to compensate for the insufficiency of the common test and calibration device. The RSS can calibrate and test conveniently the transfer function and signal processing function of the scatterometer in ground-based tests. It employs the principle of pulse reconstruction. The characteristics of the return signal are generated by a digital method. The accurate round trip path delay of the radio-frequency signal, pulse width modulation and Doppler frequency shift are simulated. Also the phase difference shift is improved. By using the RSS, the testing and calibrating experiments for the scatterometer are implemented, which indicate that the generated return signal not only can fully express the statistics of the real return signal, but also can meet the requirements of testing and calibrating the scatterometer. This method of generated return signal can be realized easily and the results are correct, so it will provide a reference for future RSSs.
Keywords :
Doppler radar; calibration; delays; geophysical equipment; pulse width modulation; radar equipment; remote sensing by radar; signal synthesis; spaceborne radar; transfer functions; Chinese spaceborne scatterometer; Doppler frequency shift; digital method; ground-based test; phase difference shift; pulse reconstruction; pulse width modulation; radio-frequency signal; return signal simulator; round trip path delay; signal processing function; testing experiments; transfer function; Calibration; Character generation; Pulse width modulation; Radar measurements; Signal design; Signal generators; Signal processing; Spaceborne radar; Testing; Transfer functions;
Conference_Titel :
Geoscience and Remote Sensing Symposium, 2002. IGARSS '02. 2002 IEEE International
Print_ISBN :
0-7803-7536-X
DOI :
10.1109/IGARSS.2002.1027285