Static Skew Compensation in Multi Core Radio over Fiber systems for 5G Mmwave Beamforming
Thomas Nikas, Evangelos Pikasis, Dimitris Syvridis

TL;DR
This paper presents a method to compensate for inter-core skew in multicore fibers used for mmwave radio over fiber systems in 5G, improving signal integrity and reducing complexity.
Contribution
It introduces an efficient skew compensation technique that avoids full equalization of fiber lengths, enhancing 5G mmwave beamforming performance.
Findings
Reduces power loss in multicore fiber systems
Simplifies skew compensation process
Improves beamforming accuracy in 5G systems
Abstract
Multicore fibers can be used for Radio over Fiber transmission of mmwave signals for phased array antennas in 5G networks. The inter-core skew of these fibers distort the radiation pattern. We propose an efficient method to compensate the differential delays, without full equalization of the transmission path lengths, reducing the power loss and complexity.
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Taxonomy
TopicsAdvanced Photonic Communication Systems · Advanced MIMO Systems Optimization · Millimeter-Wave Propagation and Modeling
