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Exploiting high carrier frequencies for mobile communications is a fundamental enabler to cope with the always increasing throughput demand.

Future wireless systems are expected to support high data rates of 1 Gbit/s or more in a variety of scenarios.

High-speed communication over mutually coupled channels can be severely affected by intersymbol interference (ISI) and crosstalk (XT).

We experimentally demonstrate simultaneous transmission of 3 spatially multiplexed 56-Gb/s PDM-QPSK channels over 24 km of a high-crosstalk 3-core fiber.

We present results of combined mode- and wavelength multiplexed transmission over conventional graded-index multimode fibers.

Using MIMO signal processing, we analyze the mode-dependent loss (MDL) of a 4200-km transmission link employing mode multiplexing over a 3-core micro-structured fiber.

We experimentally demonstrate 6 × 6 coherent multiple-input multiple-output (MIMO) crosstalk mitigation in simultaneous transmission of 3 spatially multiplexed 112-Gb/s PDM-QPSK channels over 24 km

To demonstrate a real-time, mobile, networked MIMO system in a realistic tactical environment, the DARPA has instituted a program called mobile network MIMO.

This paper presents the optimal guaranteed performance for a multiple-antenna wireless compound channel with M antennas at the transmitter and N antennas at the receiver on a Ricean fading channel

We consider the single-source min-cost multicast problem, which can be framed as a convex optimization problem with the use of network codes and convex increasing edge costs.