System and multi-layer radio frequency device
Devices and systems for increasing the gain and/or offering multiple antenna frequencies while conserving space on the antenna are provided. According to various aspects of the technology, panels with antenna elements are stacked to create a MIMO antenna array with more antenna elements while conserving space. In some aspects, the antenna elements are the same size and produce the same frequency while their physical configuration increases the gain of the antenna. In alternative aspects, the antenna elements are different sizes and produces different frequencies such that the antenna offers a greater variety or bandwidth of frequencies while conserving physical space on the antenna (i.e., maximizing a total quantity of antenna elements associated with the antenna). Using an antenna system and device with an increased quantity of antenna elements increases one or more of the system capacity, data rates, reliability, gain, coverage range, and the like.
1 . A multi-input multi-output (MIMO) antenna array comprising:
a first plurality of antenna elements arranged in a first plane, wherein the first plurality of antenna elements are a first size;
a second plurality of antenna elements arranged in a second plane that is different from the first plane, wherein the second plurality of antenna elements are a second size that is different from the first size, and wherein the first plane is positioned to overlay the second plane; and
at least one separation layer that is positioned between the first plane and the second plane, wherein the separation layer is comprised of a dielectric material,
wherein, during operation, a user device is switched from being served using the second plane to being served using the first plane based on measured radio-frequency performance of the user device falling below a predetermined threshold, wherein the switching is performed based on a determination that the user device is at or beyond a cell edge of a coverage area associated with the second plane.
2 . The antenna array of claim 1 , wherein the first size corresponds to a first frequency band.
3 . The antenna array of claim 2 , wherein the second size corresponds to a second frequency band that is different from the first frequency band.
4 . The antenna array of claim 3 , wherein the first size is larger than the second size, and wherein the first frequency band is lower than the second frequency band.
5 . The antenna array of claim 3 , wherein the first size is smaller than the second size, and wherein the first frequency band is higher than the second frequency band.
6 . The antenna array of claim 3 , wherein the first frequency band and the second frequency band at least partially overlap to share one or more frequencies.
7 . The antenna array of claim 3 , wherein the first frequency band and the second frequency band do not overlap.
8 . A multi-input multi-output (MIMO) antenna array with multiple frequency capabilities, the MIMO antenna array comprising:
a first plurality of antenna elements arranged in a first plane, the first plurality of antenna elements corresponding to a first size;
a second plurality of antenna elements arranged in a second plane, the second plurality of antenna elements corresponding to a second size that is different from the first size, wherein the second plane is different from the first plane and parallel to the first plane, wherein the first plane overlays the second plane; and
at least one separation layer placed between the first plane and the second plane, wherein the separation layer is comprised of a dielectric material,
wherein, during operation, a same user device is simultaneously connected using the first plane and the second plane by carrier aggregation, such that a first component carrier associated with a first frequency band is communicated using the first plane and a second component carrier associated with a second frequency band is communicated using the second plane.
9 . The antenna array of claim 8 , wherein the dielectric material includes polytetrafluoroethylene.
10 . The antenna array of claim 8 , wherein the first size corresponds to a first frequency band.
11 . The antenna array of claim 10 , wherein the second size corresponds to a second frequency band that is different from the first frequency band.
12 . The antenna array of claim 10 , wherein the first size is larger than the second size, and wherein the first frequency band is lower than the second frequency band.
13 . The antenna array of claim 10 , wherein the first size is smaller than the second size, and wherein the first frequency band is higher than the second frequency band.
14 . The antenna array of claim 10 , wherein the first frequency band and the second frequency band at least partially overlap to share one or more frequencies.
15 . The antenna array of claim 10 , wherein the first frequency band and the second frequency band do not overlap.
16 . A system comprising:
a base station; and
a multi-input multi-output (MIMO) antenna array communicatively coupled to the base station, the MIMO antenna array comprised of:
a first plurality of antenna elements arranged in a first plane, the first plurality of antenna elements corresponding to a first size;
a second plurality of antenna elements arranged in a second plane, the second plurality of antenna elements corresponding to a second size that is different from the first size, wherein the second plane is different from the first plane and parallel to the first plane, wherein the first plane overlays the second plane, and wherein the first plurality of antenna elements have physical dimensions that are different than physical dimensions of the second plurality of antenna elements; and
at least one separation layer placed between the first plane and the second plane, wherein the separation layer is comprised of a dielectric material,
wherein, during operation, the base station switches a user device from being served using the second plane to being served using the first plane based on measured radio-frequency performance of the user device falling below a predetermined threshold, wherein the switching is performed based on a determination that the user device is at or beyond a cell edge of a coverage area associated with the second plane.
17 . The system of claim 16 , wherein the first plane and the second plane are concurrently powered on such that a user device can switch from one layer to another.
18 . The system of claim 16 , wherein the dielectric material includes polytetrafluoroethylene.
19 . The system of claim 16 , wherein at least a portion of antenna elements in the first plurality of antenna elements are connected to at least another portion of antenna elements in the first plurality to form one or more groups.
20 . The system of claim 16 , wherein the first size corresponds to a first frequency band and the second size corresponds to a second frequency band that is different from the first frequency band.