The capacity of cellular networks can be improved by the unprecedented array gain and spatial multiplexing offered by Massive MIMO. Since its inception, the coherent interference caused by pilot contamination has been believed to create a finite capacity limit, as the number of antennas goes to infinity. In this paper, we prove that this is incorrect and an artifact from using simplistic channel models and suboptimal precoding/combining schemes. We show that with multicell MMSE precoding/combining and a tiny amount of spatial channel correlation or large-scale fading variations over the array, the capacity increases without bound as the number of antennas increases, even under pilot contamination. More precisely, the result holds when the c...
The use of large-scale antenna arrays can bring substantial improvements in energy and/or spectral e...
We consider the uplink of a Massive MIMO network with L cells, each comprising a BS with M antennas ...
International audienceWe consider the uplink (UL) and downlink (DL) of non-cooperative multi-cellula...
The capacity of cellular networks can be improved by the unprecedented array gain and spatial multip...
The capacity of cellular networks can be improved by the unprecedented array gain and spatial multip...
Massive MIMO (multiple-input multiple-output) provides great improvements in spectral efficiency ove...
International audienceIn this paper, the capacity scaling of multicell massive MIMO systems is inves...
© 2019 Dr. Anand SivamalaiMassive Multiple-Input Multiple-Output (MIMO) technology promises to deliv...
International audienceThis paper introduces a new formula to derive explicit capacity expressions of...
International audienceWe consider a multicell MIMO uplink channel where each base station (BS) is eq...
International audienceThis paper investigates the capacity scaling of multicell massive MIMO systems...
International audienceThe use of large-scale antenna arrays can bring substantial improvements in en...
International audienceThis paper introduces two new formulas to derive explicit capacity expressions...
Since the seminal paper by Marzetta from 2010, Massive MIMO has changed from being a theoretical con...
The use of large-scale antenna arrays can bring substantial improvements in energy and/or spectral e...
We consider the uplink of a Massive MIMO network with L cells, each comprising a BS with M antennas ...
International audienceWe consider the uplink (UL) and downlink (DL) of non-cooperative multi-cellula...
The capacity of cellular networks can be improved by the unprecedented array gain and spatial multip...
The capacity of cellular networks can be improved by the unprecedented array gain and spatial multip...
Massive MIMO (multiple-input multiple-output) provides great improvements in spectral efficiency ove...
International audienceIn this paper, the capacity scaling of multicell massive MIMO systems is inves...
© 2019 Dr. Anand SivamalaiMassive Multiple-Input Multiple-Output (MIMO) technology promises to deliv...
International audienceThis paper introduces a new formula to derive explicit capacity expressions of...
International audienceWe consider a multicell MIMO uplink channel where each base station (BS) is eq...
International audienceThis paper investigates the capacity scaling of multicell massive MIMO systems...
International audienceThe use of large-scale antenna arrays can bring substantial improvements in en...
International audienceThis paper introduces two new formulas to derive explicit capacity expressions...
Since the seminal paper by Marzetta from 2010, Massive MIMO has changed from being a theoretical con...
The use of large-scale antenna arrays can bring substantial improvements in energy and/or spectral e...
We consider the uplink of a Massive MIMO network with L cells, each comprising a BS with M antennas ...
International audienceWe consider the uplink (UL) and downlink (DL) of non-cooperative multi-cellula...