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Rugini, L (author), Banelli, Paolo (author), Leus, G.J.T. (author)
We focus on the performance of the energy detector for cognitive radio applications. Our aim is to incorporate, into the energy detector, low-complexity algorithms that compute the performance of the detector itself. The main parameters of interest are the probability of detection and the required number of samples. Since the exact performance...
conference paper 2016
document
Fang, K. (author), Rugini, L. (author), Leus, G. (author)
Modern wireless communication systems require high transmission rates, giving rise to frequency selectivity due to multipath propagation. In addition, high-mobility terminals and scatterers induce Doppler shifts that introduce time selectivity. Therefore, advanced techniques are needed to accurately model the time- and frequency-selective (i.e.,...
journal article 2010
document
Fang, K. (author), Rugini, L. (author), Leus, G. (author)
We propose low-complexity block turbo equalizers for orthogonal frequency-division multiplexing (OFDM) systems in time-varying channels. The presented work is based on a soft minimum mean-squared error (MMSE) block linear equalizer (BLE) that exploits the banded structure of the frequency-domain channel matrix, as well as a receiver window that...
journal article 2008
document
Rugini, L. (author), Leus, G. (author)
conference paper 2007
document
Rugini, L. (author), Banelli, P. (author), Leus, G. (author)
Recently, several approaches have been proposed for the equalization of orthogonal frequency-division multiplexing (OFDM) signals in challenging high-mobility scenarios. Among them, a minimum mean-squared error (MMSE) block linear equalizer (BLE), based on a band LDL factorization, is particularly attractive for its good tradeoff between...
journal article 2006
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