ENHANCING OUTDOOR-INDOOR PENETRATION OF WIRELESS SIGNALS
Systems, components, and methods for promoting the penetration of radiowaves between the exterior and the interior of a building are provided. An electromagnetic metasurface is mounted with respect to a surface of a building and a radiofrequency waveguide is mounted within the building. The electromagnetic metasurface is configured to focus incident radiowaves onto an entry to the radiofrequency waveguide and the radiofrequency waveguide comprises at least one radiating opening for causing radiowaves that have been guided along the radiofrequency waveguide to radiate into an interior of the building.
1 . A system comprising:
an electromagnetic metasurface for mounting with respect to a surface of a building; and
a radiofrequency waveguide for mounting within the building,
wherein the electromagnetic metasurface is configured to focus incident radiowaves onto an entry to the radiofrequency waveguide, and
wherein the radiofrequency waveguide comprises at least one radiating opening for causing radiowaves that have been guided along the radiofrequency waveguide to radiate into an interior of the building.
2 . The system of claim 1 , wherein the entry to the radiofrequency waveguide comprises a flared shape with respect to a remainder of the radiofrequency waveguide.
3 . The system of claim 1 , wherein the radiofrequency waveguide is configured to be installed within the building such that a majority of the radiofrequency waveguide is hidden by an interior surface of the building.
4 . The system of claim 3 , wherein the interior surface of the building is at least one of:
a ceiling;
a wall; and
a floor.
5 . The system of claim 1 , wherein the electromagnetic metasurface is configured to be mounted with respect to a substantially vertical surface of the building.
6 . The system of claim 5 , wherein the substantially vertical surface of the building is an exterior wall of the building.
7 . The system of claim 5 , wherein the substantially vertical surface of the building is a window of the building.
8 . The system of claim 5 , where the electromagnetic metasurface is substantially transparent and is configured to substitute for a window of the building.
9 . The system of claim 5 , where the electromagnetic metasurface is configured to form a backing surface of a wall adornment for the building.
10 . The system of claim 1 , further comprising:
multiple electromagnetic metasurfaces for mounting with respect to the surface of a building, wherein each electromagnetic metasurface of the multiple electromagnetic metasurfaces is configured to focus incident radiowaves on the entry to the radiofrequency waveguide; and
a control unit configured to selectively enable each electromagnetic metasurface of the multiple electromagnetic metasurfaces in a time-multiplexed manner.
11 . The system of claim 1 , wherein the electromagnetic metasurface comprises multiple metasurface cells, wherein each metasurface cell of the multiple metasurface cells is configured to focus incident radiowaves on the entry to the radiofrequency waveguide.
12 . The system of claim 1 , wherein the electromagnetic metasurface is configurable in situ to adjust the focus of the incident radiowaves onto the entry to the radiofrequency waveguide.
13 . The system of claim 12 , wherein the electromagnetic metasurface is configured at a deployment of the system.
14 . The system of claim 12 , further comprising a radiowave reception device for mounting with respect to the surface of the building in proximity to the electromagnetic metasurface, wherein the radiowave reception device is configured to provide control information for dynamically configuring the electromagnetic metasurface in dependence on received radiowaves, and wherein the electromagnetic metasurface is dynamically configurable during an operation of the system.
15 . The system of claim 1 , wherein the incident radiowaves are in a Frequency Range 2 (FR2) for a 5G New Radio (5G NR).
16 . An electromagnetic metasurface for mounting with respect to a surface of a building,
wherein the electromagnetic metasurface is configured to focus incident radiowaves onto an entry to a radiofrequency waveguide mounted within the building, wherein the radiofrequency waveguide comprises at least one radiating opening for causing radiowaves that have been guided along the radiofrequency waveguide to radiate into an interior of the building.
17 . A radiofrequency waveguide for mounting within a building, comprising:
an entry to the radiofrequency waveguide, wherein the entry is configured to receive incident radiowaves focussed thereon by an electromagnetic metasurface mounted with respect to a surface of the building; and
at least one radiating opening for causing radiowaves that have been guided along the radiofrequency waveguide to radiate into an interior of the building.
18 . A method of promoting a penetration of radiowaves into an interior of a building, comprising the steps of:
mounting an electromagnetic metasurface with respect to a surface of the building; and
mounting a radiofrequency waveguide within the building,
wherein the electromagnetic metasurface is configured to focus incident radiowaves onto an entry to the radiofrequency waveguide,
and the radiofrequency waveguide comprises at least one radiating opening for causing radiowaves that have been guided along the radiofrequency waveguide to radiate into an interior of the building.
19 . The method of claim 18 , further comprising:
sampling received radiowaves in proximity to the electromagnetic metasurface; and
configuring the electromagnetic metasurface in dependence on received radiowaves.
20 . The method of claim 18 , further comprising:
mounting a radiowave reception device with respect to the surface of the building in proximity to the electromagnetic metasurface; and
operating the radiowave reception device to provide control information for dynamically configuring the electromagnetic metasurface in dependence on received radiowaves.