Abstract:
This disclosure concerns a method and apparatus of generating a signal from multi-site radars using the same channel. This disclosure provides the method comprising generating a first signal, generating a plurality of time-shifted signals by shifting the first signal by different time shift values, computing correlation values between the first signal and the time-shifted signals, selecting second signals whose correlation values are not more than a threshold from among the time-shifted signals, in a case where two of the second signals are selected, computing a sum of correlation values for all selectable signal combinations, and selecting a signal combination that leads to a minimum sum of correlation values from among the signal combinations.
Abstract:
Disclosed are a signal compression apparatus and method for dynamic compressive sensing, including: a signal input unit configured to simultaneously output an input signal, and generate and output a linear measurement reference signal based on the input signal; a linear transform unit configured to receive the linear measurement reference signal and variably generate a linear measurement matrix value according to the linear measurement reference signal; a signal compressor configured to output a compressed signal for the input signal based on the generated linear measurement matrix value; and a signal processor configured to reconstruct the compressed signal and perform spectrum sensing of the input signal. Accordingly, it is possible to increase signal compression efficiency of compressive sensing and improve signal reconstruction performance by using sparsity information of the input signal, and also by performing signal compression by using a compression matrix suitable for the sparsity information of the input signal.
Abstract:
Disclosed is a method for wideband spectrum sensing using compressive sensing, the method including: acquiring a sampling signal by applying a modulated wideband converter (MWC) to a received signal; and acquiring a restoration signal corresponding to the received signal by using a compressive sensing restoration algorithm from the sampling signal, and a mixing signal multiplied by the received signal at the time of applying the MWC, as a signal transformed from a first mixing signal having a periodic waveform, includes a second mixing signal to remove a partial frequency area from the received signal through the application of the MWC.