Title :
An asymptotic LMPI test for cyclostationarity detection with application to cognitive radio
Author :
Ramirez, David ; Schreier, Peter J. ; Via, Javier ; Santamaria, Ignacio ; Scharf, Louis L.
Author_Institution :
Signal & Syst. Theor. Group, Univ. of Paderborn, Paderborn, Germany
Abstract :
We propose a new detector of primary users in cognitive radio networks. The main novelty of the proposed detector in comparison to most known detectors is that it is based on sound statistical principles for detecting cyclostationary signals. In particular, the proposed detector is (asymptotically) the locally most powerful invariant test, i.e. the best invariant detector for low signal-to-noise ratios. The derivation is based on two main ideas: the relationship between a scalar-valued cyclostationary signal and a vector-valued wide-sense stationary signal, and Wijsman´s theorem. Moreover, using the spectral representation for the cyclostationary time series, the detector has an insightful interpretation, and implementation, as the broadband coherence between frequencies that are separated by multiples of the cycle frequency. Finally, simulations confirm that the proposed detector performs better than previous approaches.
Keywords :
acoustic noise; acoustic signal detection; acoustic signal processing; radio networks; Wijsman theorem; asymptotic locally most powerful invariant test; cognitive radio networks; cyclostationary detection; cyclostationary detector; cyclostationary signals; signal-to-noise ratios; Cognitive radio; Correlation; Covariance matrices; Detectors; Signal to noise ratio; Time series analysis; Cyclostationarity; Hypothesis test; Locally most powerful invariant test (LMPIT); Maximal invariant; Toeplitz matrices;
Conference_Titel :
Acoustics, Speech and Signal Processing (ICASSP), 2015 IEEE International Conference on
Conference_Location :
South Brisbane, QLD
DOI :
10.1109/ICASSP.2015.7179057