Synthetic aperture radar echo simulator and echo simulation processing method
A synthetic aperture radar and echo simulation technology, applied in instruments, radio wave measurement systems, etc., can solve the problems of inability to realize echo simulation and echo playback, cumbersome data interaction, complex system structure, etc. Effects of communication volume, increased processing volume, and simple system structure
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Embodiment 1
[0025]Embodiment 1: In the synthetic aperture radar echo simulator of this embodiment: the FPGA signal processing chip adopts a field programmable gate array (FPGA) logic device modeled as XilinxXC6VLX240T, and through the reconfiguration of internal logic resources, an Ethernet control unit is formed. , RAM unit, echo generation unit, D / A control unit, memory control unit and high-speed interface (CPCI) control unit; the synchronous dynamic random access memory (DDR) model is WD2RE01GX809 of WINTEC company, its capacity is 1GB, and the maximum operating frequency is 200MHz ; The power module is voltage chip PTH05010W and TPS51100; TPS51100 outputs 1.8V voltage for DDR power supply, PTH05010W outputs three sets of voltages, of which 2.5V and 1.0V are for FPGA signal processing module power supply, 3.3V is for network interface module and digital Power supply for analog conversion (D / A) module; TPS51100 is power supply for synchronous dynamic random access memory (DDR); the uppe...
Embodiment 2
[0039] Embodiment 2: The synthetic aperture radar echo simulator in this embodiment is the same as that in Embodiment 1.
[0040] The echo simulation processing method of synthetic aperture radar is as follows:
[0041] Taking the simulated image pixel size as 4096×4096 airborne single-view high-resolution SAR image as an example, as the target backscatter coefficient echo simulation of the real scene, the simulator system configuration parameters are also the same as the embodiment; according to the configuration parameters, the distance The direction and direction resolution is 1m×1m, and the scene size is 4096m×4096m, so there are 4096×4096 target points in total.
[0042] The processing from step 1 to step 5 is the same as in embodiment one;
[0043] Step 6. Inverse time-frequency transformation processing and step 6b. Output of large scene echo signals: Since FPGA cannot complete time-frequency transformation processing (step 4) and time-frequency transformation processi...
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