Filterbank Multicarrier (FBMC) modulations based on OQAM (FBMC/OQAM) have become a promising alternative to conventional OFDM because of their higher spectral efficiency and their improved selectivity in the frequency domain. Unfortunately, the orthogonality of these modulations is lost when the channel presents strong frequency selectivity, meaning that the channel response cannot be approximated as frequency flat within each subcarrier bandwidth. In this paper, this effect is analyzed in the massive MIMO setting, whereby the number of transmit and receive antennas is asymptotically large (but not as large as the number of subcarriers). It is formally shown that, under these asymptotic conditions, the output mean squared error (MSE) at each subcarrier converges to a constant independent of the subcarrier index. This was previously referred to as “self-equalization” principle in the FBMC/OQAM literature. It is demonstrated here that this phenomenon is a direct consequence of channel hardening effect in large scale MIMO configurations.
Mestre, X., Rottenberg, F., & Navarro, M. (2016). LINEAR RECEIVERS FOR MASSIVE MIMO FBMC/OQAM UNDER STRONG CHANNEL FREQUENCY SELECTIVITY. In Xavier Mestre, François Rottenberg, Mònica Navarro (ed.), LINEAR RECEIVERS FOR MASSIVE MIMO FBMC/OQAM UNDER STRONG CHANNEL FREQUENCY SELECTIVITY. https://doi.org/10.1109/SSP.2016.7551723