Two-polarization switched-beam antenna for wireless communication systems

US9722322B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9722322-B2
Application numberUS-201214006519-A
CountryUS
Kind codeB2
Filing dateMar 29, 2012
Priority dateApr 1, 2011
Publication dateAug 1, 2017
Grant dateAug 1, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An antenna device including: a first antenna assembly configured to receive first radiofrequency signals polarized according to a first polarization; a second antenna assembly configured to receive second radiofrequency signals polarized according to a second polarization orthogonal to the first polarization; and a radiofrequency signal handling assembly coupled with the first and second antenna assemblies, and configured to handle the received first radiofrequency signals separately from the received second radiofrequency signals.

First claim

Opening claim text (preview).

The invention claimed is: 1. An antenna device comprising: a first antenna assembly comprising a plurality of printed directional antenna elements configured to receive first radiofrequency signals polarized according to a first polarization; a second antenna assembly comprising a plurality of printed omnidirectional metamaterial-based antenna elements configured to receive second radiofrequency signals polarized according to a second polarization orthogonal to the first polarization; and a radiofrequency signal handling assembly coupled with the first and second antenna assemblies, and configured to handle the received first radiofrequency signals separately from the received second radiofrequency signals; and provide either a single output radiofrequency signal based on at least one received first radiofrequency signal and at least one received second radiofrequency signal, or a first output radiofrequency signal based on at least one received first radiofrequency signal and a second output radiofrequency signal based on at least one received second radiofrequency, wherein the radiofrequency signal handling assembly comprises: a first switching network coupled with the first antenna assembly, and configured to select a subset of the first radiofrequency signals received by the printed directional antenna elements; a second switching network coupled with the second antenna assembly, and configured to select a subset of the second radio frequency signals received by the printed omnidirectional metamaterial-based antenna elements; at least one combining network coupled with at least one of the first and second switching networks to receive, as incoming signals, the radiofrequency signals selected by the at least one of the first and second switching networks, and configured to weight the incoming signals and to combine the weighted incoming signals into the single output radiofrequency signal or into at least one of the first and second output radio frequency signals; and a controller coupled with at least one of the first and second switching networks and the at least one combining network configured to control selection performed by the at least one of the first and second switching networks and weighting performed by the at least one combining network on the basis of at least one radio performance indicator based on at least one previously provided single output radiofrequency signal or based on at least one previously provided first output radio frequency signal and at least one previously provided second output radio frequency signal. 2. The antenna device of claim 1 , wherein the radiofrequency signal handling assembly comprises: a single said combining network which is configured to weight the incoming signals and to combine the weighted incoming signals into the single output radiofrequency signal. 3. The antenna device of claim 2 , wherein the controller is configured to control selection performed by the first and second switching networks and weighting performed by the single combining network on the basis of at least one radio performance indicator based on at least one previously provided single output radiofrequency signal. 4. The antenna device of claim 1 , wherein the at least one combining network comprises: a first combining network coupled with the first switching network to receive, as first incoming signals, the first radiofrequency signals selected by the first switching network, and configured to weight the first incoming signals and to combine the weighted first incoming signals into the first output radiofrequency signal; a second combining network coupled with the second switching network to receive, as second incoming signals, the second radiofrequency signals selected by the second switching network, and configured to weight the second incoming signals and to combine the weighted second incoming signals into the second output radiofrequency signal. 5. The antenna device of claim 1 , wherein the first switching network is configured to select one of the first radiofrequency signal received by the plurality of printed directional antenna elements and to provide the selected first radiofrequency signal as the first output radiofrequency signal; and the at least one combining network comprises a combining network coupled with the second antenna assembly to receive, as incoming signals, the second radiofrequency signals received by the plurality of printed omnidirectional metamaterial-based antenna elements, and configured to weight the incoming signals and to combine the weighted incoming signals into the second output radiofrequency signal. 6. The antenna device according to claim 4 , wherein the controller is configured to control selection performed by the switching network and weighting performed by the combining networks on the basis of at least one radio performance indicator based on at least one previously provided first output radiofrequency signal and at least one previously provided second radiofrequency signal. 7. The antenna device according to claim 2 , wherein each combining network is configured to weight the respective incoming signals by applying to each respective incoming signal a corresponding phase shift. 8. The antenna device of claim 7 , wherein the phase shifts are applied by a plurality of delay lines selectively switched. 9. The antenna device according to claim 1 , further comprising: an antenna case housing the radiofrequency signal handling assembly, wherein the first antenna assembly and the second antenna assembly are arranged on the antenna case to receive, respectively, the first and second radiofrequency signals. 10. The antenna device of claim 9 , wherein at least one of the antenna assemblies comprises a plurality of antenna elements arranged on the antenna case so that that a distance between each pair of adjacent antenna elements is lower than, or equal to, half of an operating wavelength of the antenna device. 11. The antenna device according to claim 9 , wherein the second antenna assembly is rotatably mounted on the antenna case and is configured to be rotated to receive the second radiofrequency signals when the antenna device is on, or when a communication is ongoing. 12. The antenna device according to claim 9 , wherein the antenna case has a cylindrical shape, and wherein the first antenna assembly is arranged on a first base of the antenna case and the second antenna assembly is arranged either on a second base, or on a lateral surface, of the antenna case. 13. A communication device comprising the antenna device as claimed in claim 1 . 14. A communication device comprising: the antenna device as claimed in claim 1 ; and at least one receiving assembly coupled with the radiofrequency signal handling assembly to receive and process the output radiofrequency signal.

Assignees

Inventors

Classifications

  • using different reception schemes, at least one of them being a diversity reception scheme · CPC title

  • Combinations of substantially independent non-interacting antenna units or systems {(multiple beam H01Q25/00)} · CPC title

  • Polarisation diversity; Directional diversity · CPC title

  • using subgroups of receive antennas · CPC title

  • varying the orientation by switching energy from one active radiating element to another, e.g. for beam switching · CPC title

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What does patent US9722322B2 cover?
An antenna device including: a first antenna assembly configured to receive first radiofrequency signals polarized according to a first polarization; a second antenna assembly configured to receive second radiofrequency signals polarized according to a second polarization orthogonal to the first polarization; and a radiofrequency signal handling assembly coupled with the first and second antenn…
Who is the assignee on this patent?
Bertin Giorgio, Braglia Marco, Collotta Ivano Salvatore, and 6 more
What technology area does this patent fall under?
Primary CPC classification H01Q21/24. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Aug 01 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).