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On the Performance Gain of the FFT Filter-Bank-Based Summation and Majority CFAR Detectors.

, , , and . IEEE Trans. Instrum. Meas., 58 (5): 1778-1788 (2009)

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Cyclostationarity-based blind classification of STBCs for cognitive radio systems., , and . ICC, page 1715-1720. IEEE, (2012)An effective implementation of a time delay estimator for source location., and . ICASSP, page 915-918. IEEE, (1983)Cyclostationarity-based Algorithm for Blind Recognition of OFDM and Single Carrier Linear Digital Modulations., , , and . PIMRC, page 1-5. IEEE, (2007)On the Performance Gain of the FFT Filter-Bank-Based Summation and Majority CFAR Detectors., , , and . IEEE Trans. Instrum. Meas., 58 (5): 1778-1788 (2009)The Okamoto lower bound for the normalized detection threshold of the FFT filter bank-based summation detector., , , and . CCECE, page 1-6. IEEE, (2010)Experimental results for M-FSK signal classification and parameter estimation., , , and . I2MTC, page 1786-1789. IEEE, (2013)Cyclostationarity-Based Robust Algorithms for QAM Signal Identification., , , and . IEEE Commun. Lett., 16 (1): 12-15 (2012)The probability of false alarm of the cross-spectrum based detector for a two-channel interferometer., and . CCECE, page 169-174. IEEE, (2011)Blind identification of SM and alamouti STBC signals based on fourth-order statistics., , , and . ICC, page 4666-4670. IEEE, (2013)Novel algorithm for STBC-OFDM identification in cognitive radios., , and . ICC, page 2770-2774. IEEE, (2013)