Ramanujan Subspaces and its Applications to Frequency Selective Channels
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Abstract
In this thesis, a unified framework to design new signals using Ramanujan sums
newlineis presented for wireless communication applications. Primarily, a new modulation
newlineand demodulation method referred to as Ramanujan Periodic Subspace Division
newlineMultiplexing (RPSDM) that involves periodic Ramanujan Subspaces is proposed
newlinefor multi-carrier systems. These Ramanujan Subspaces are constructed using Ramanujan sums. In addition, a theoretical framework describing how Ramanujan Periodic Subspaces decompose linear-time invariant channels with cyclic prefix(s)(CP)
newline(random circulant matrices) are presented.
newline a joint PAPR reduction and precoding
newlinescheme using approximate message passing (AMP) is proposed for Massive MIMORPSDM. Finally, it is proved that RPSDM outperforms OFDM in terms of PAPR
newlineand BER with extra computational complexity.
newline