Title :
Novel overlay/underlay cognitive radio waveforms using SD-SMSE framework to enhance spectrum efficiency-part II: analysis in fading channels
Author :
Chakravarthy, Vasu ; Li, Xue ; Zhou, Ruolin ; Wu, Zhiqiang ; Temple, Michael
Author_Institution :
Sensors Directorate, EW Tech. Dev. & Anal. Branch, Air Force Res. Lab., Dayton, OH, USA
fDate :
6/1/2010 12:00:00 AM
Abstract :
Interest in Cognitive Radio (CR) remains strong as the communications community strives to solve the spectrum congestion problem. In conventional CR implementations, interference to primary users is minimized using either overlay waveforms that exploit unused (white) spectrum holes or underlay waveforms that spread their power spectrum density over an ultra-wide bandwidth. In Part I, we proposed a novel hybrid overlay/underlay waveform that realizes benefits of both waveforms and demonstrated its performance in an AWGN channel. This was done by extending the original Spectrally Modulated Spectrally Encoded (SMSE) framework to enable soft decision CR implementations that exploit both unused (white) and underused (gray) spectral areas. In Part II, we analyze and evaluate performance of the proposed hybrid overlay/underlay waveform in frequency selective fading channels. A simulated performance analysis of overlay, underlay and hybrid overlay/ underlay waveforms in frequency selective fading channels is presented and benefits discussed.
Keywords :
cognitive radio; fading channels; frequency selective fading channels; overlay-underlay cognitive radio waveforms; simulated performance analysis; spectrally modulated spectrally encoded framework; spectrum congestion problem; spectrum efficiency enhancement; AWGN channels; Bandwidth; Bit error rate; Chromium; Cognitive radio; Fading; Force sensors; Frequency; Interference; Performance analysis; Software defined radio, cognitive radio, non-contiguous waveform, overlay waveform, underlay waveform, dynamic spectrum access.;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2010.06.090176