An Improved Gaussian Function Based UWB Pulse Design Method
An ultra-wideband pulse and Gaussian function technology, applied in the field of ultra-wideband pulse design, can solve the problems of low power spectrum utilization, complex algorithms and implementation methods, etc., and achieve the effect of improving utilization
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[0027] Below in conjunction with accompanying drawing and embodiment the present invention will be further described
[0028] An improved Gaussian function-based ultra-wideband pulse design method, the specific design steps are as follows:
[0029] 1. Divide the frequency range of 0-10.6GHz into four commonly used sub-bands, the four sub-bands are 0-960MHz, 960-1610MHz, 1610-3100MHz and 3100-10600MHz;
[0030] 2. Design four band-pass filters according to the divided four sub-bands, and the pass-band frequency responses of the four band-pass filters correspond to the divided four sub-bands.
[0031] 3. For each sub-band, select an appropriate pulse shaping factor and the order of the derivative of the Gaussian function; the optimal sub-pulse for the sub-band is obtained by optimizing the power spectrum utilization while satisfying the FCC radiation mask.
[0032] 4. Input the sub-pulse corresponding to each sub-band to the corresponding band-pass filter.
[0033] 5. Add the ...
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