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Coverage Enhancement for NLOS mmWave Links Using Passive Reflectors

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arxiv 1905.04794 v1 pith:ZPXE2XPK submitted 2019-05-12 eess.SP physics.app-ph

classification eess.SPphysics.app-ph
keywords mmwavenloslinkreflectorscoveragemetallicpowerreceived
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The future 5G networks are expected to use millimeter wave (mmWave) frequency bands to take advantage of large unused spectrum. However, due to the high path loss at mmWave frequencies, coverage of mmWave signals can get severely reduced, especially for non-line-of-sight (NLOS) scenarios as mmWave signals are severely attenuated when going through obstructions. In this work, we study the use of passive metallic reflectors of different shapes/sizes to improve 28 GHz mmWave signal coverage for both indoor and outdoor NLOS scenarios. We quantify the gains that can be achieved in the link quality with metallic reflectors using measurements, analytical expressions, and ray tracing simulations. In particular, we provide an analytical model for the end-to-end received power in an NLOS scenario using reflectors of different shapes and sizes. For a given size of the flat metallic sheet reflector approaching to the size of incident plane waves, we show that the reflected received power for the NLOS link is same as line-of-sight (LOS)free space received power of the same link distance. Extensive results are provided to study impact of environmental features and reflector characteristics on NLOS link quality.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Reconfigurable Intelligent Surfaces vs. Relaying: Differences, Similarities, and Performance Comparison

    eess.SP 2019-08 conditional novelty 4.0 of 10

    For a sufficiently large anomalous-reflector RIS, the paper's model predicts spectral efficiencies comparable to an ideal full-duplex relay, without a power amplifier or a half-duplex penalty.

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