Blind Identification of SM and Alamouti STBC-OFDM Signals

Wireless Communications, IEEE Transactions  (2016)

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Abstract
This paper proposes an efficient identification algorithm for spatial multiplexing (SM) and Alamouti (AL) coded orthogonal frequency-division multiplexing (OFDM) signals. The cross correlation between the received signals from different antennas is exploited to provide a discriminating feature to identify SM-OFDM and AL-OFDM signals. The proposed algorithm requires neither estimation of the channel coefficients and noise power, nor the modulation of the transmitted signal. Moreover, it does not need space-time block code or OFDM block synchronization. The effectiveness of the proposed algorithm is demonstrated through extensive simulation experiments in the presence of diverse transmission impairments, such as time and frequency offsets, Doppler frequency, and spatially correlated fading.
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Key words
ofdm modulation,modulation coding,signal detection,space division multiplexing,space-time block codes,al-ofdm signals,alamouti coded stbc-ofdm signals,sm-ofdm signals,blind identification algorithm,cross correlation,diverse transmission impairments,orthogonal frequency division multiplexing,space-time block code,spatial multiplexing,signal identification,orthogonal frequency division multiplexing (ofdm),orthogonal frequency division-multiplexing (ofdm),space-time block code (stbc),space???time block code (stbc),frequency modulation,frequency division multiplexing,niobium,wireless communication,ofdm
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