Method for sea clutter suppression and moving target detection based on FRFT (Fractional Fourier Transform) domain non-coherent accumulation
A non-coherent accumulation and moving target detection technology, applied in the field of moving target detection of sea detection radar, can solve the problems of weakening target energy, false alarm, weak target echo, etc., and achieve suppression of sea clutter and low computational complexity The effect of improving the signal-to-clutter ratio
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[0027] Specific implementation mode 1: sea clutter suppression and moving target detection method based on FRFT domain mean value accumulation
[0028] The following is attached with the manual figure 2 For further detailed description. The specific implementation of the sea clutter suppression and moving target detection method based on FRFT domain mean value accumulation is divided into the following steps:
[0029] (1) The echo signal of the radar antenna is amplified and mixed to obtain zero intermediate frequency data, which is sent to the storage device 1 for preprocessing, so as to obtain the N-dimensional input signal vector x(n) formed by N sampling points at n time =[x(n), x(n-1), ..., x(n-N+1)] T .
[0030] (2) The storage device 2 delays the input signal vector of the storage device 1 by a certain time τ. In order to ensure that the energy of the moving target before and after the cancellation of the clutter map in the FRFT domain is basically not weakened, th...
specific Embodiment approach 2
[0051] Specific implementation mode 2: sea clutter suppression and moving target detection method based on single-pole feedback accumulation in FRFT domain
[0052] The following is attached with the manual image 3 For further detailed description. The specific implementation of the sea clutter suppression and moving target detection method based on single-pole feedback accumulation in the FRFT domain is divided into the following steps:
[0053] (1) The echo signal of the radar antenna is amplified and mixed to obtain zero intermediate frequency data, which is sent to the storage device 1 for preprocessing, so as to obtain the N-dimensional input signal vector x(n) formed by N sampling points at n time =[x(n), x(n-1), ..., x(n-N+1)] T .
[0054] (2) The storage device 3 delays the input signal vector of the storage device 1 by a certain time τ. In order to ensure that the energy of the moving target before and after the cancellation of the clutter map in the FRFT domain ...
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