Sub-Nyquist sampling of OFDM signals for cognitive radios

Acoustics, Speech and Signal Processing(2014)

引用 9|浏览16
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摘要
We investigate sampling and detection of orthogonal frequency-division multiplexing (OFDM) signals with unknown carriers at sub-Nyquist rates. Efficient acquisition and processing of such broadcast signals is a challenge but constitutes a crucial part of enabling cognitive radios. In order to alleviate both the analog and digital burden when treating wideband signals, we adapt the modulated wideband converter (MWC), a recently proposed sub-Nyquist sampling system, to fit OFDM signals. In particular, after detecting the active bands using the MWC, we use several different equalization methods in order to improve the bit-error rate (BER). We then show how to process the real sub-Nyquist samples in each band in order to recover the complex OFDM signal. A standard digital OFDM receiver is then used to detect the input symbols. To evaluate the performance of our system, we derive an analytical bound on the BER as a function of the received signal to noise ratio. Simulations validate the proposed system.
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关键词
OFDM modulation,cognitive radio,equalisers,error statistics,radio receivers,signal detection,signal sampling,BER,MWC,bit error rate,broadcast signals,cognitive radio,digital OFDM receiver,equalization methods,modulated wideband converter,orthogonal frequency division multiplexing,signal detection,signal-to-noise ratio,subNyquist sampling,Compressed sensing,OFDM,cognitive radios,modulated wideband converter,multiband sampling
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