Configurable Power Saving Signal with Multiple Functionalities in 5G NR
US-2024414647-A1 · Dec 12, 2024 · US
US9264114B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9264114-B2 |
| Application number | US-201514833874-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 24, 2015 |
| Priority date | Dec 30, 2004 |
| Publication date | Feb 16, 2016 |
| Grant date | Feb 16, 2016 |
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An apparatus comprises a first and a second input connection for a first (D 1 ) and a second (D 2 ) data stream, and a first and a second polarization former, one for each of said data streams. The apparatus further comprises a first and a second antenna of respective first and second polarizations, and one amplifier each. The apparatus further comprises a first and a second combiner, so that the outputs from the polarization formers may be combined as input to each of the first and second antennas.
Opening claim text (preview).
The invention claimed is: 1. A method performed in an apparatus for generating one or more signals having a formed polarization, comprising: receiving at least one data stream; inputting each data stream into a respective polarization former; splitting, by each polarization former, the corresponding data stream into one first separate stream and one second separate stream; introducing, by the at least one polarization former, a phase shift between the at least one first separate stream and the at least one second separate stream; transmitting the at least one first separate stream to a first output port and the at least one second separate stream to a second output port, wherein the first output port is configured for connection to one or more antennas only of a first polarization, and the second output port is configured for connection to one or more antennas only of a second polarization different from the first polarization, such that the one first separate stream and the one second separate stream are combined in air resulting in a signal having the formed polarization as a function of the phase shift. 2. The method of claim 1 , wherein the phase shift is introduced by introducing a delay into at least one of the one first separate stream and the one second separate stream. 3. The method of claim 1 , wherein there is a desired phase relation between the one first separate stream at the first antenna and the one second separate stream at the second antenna. 4. The method of claim 3 , wherein the desired phase relation is that the first antenna and the second antenna have a same phase center. 5. An apparatus configured to generate one or more signals having formed polarizations, the apparatus comprising: first and second output ports, and at least one polarization former each configured to split one received data stream into one first separate stream and one second separate stream, introduce a phase shift between the one first separate stream and the one second separate stream; and output the one first separate stream and the one second separate stream to the first output port and the second output port, respectively, wherein the first output port is configured for connection to one or more antennas only of a first polarization, and wherein the second output port is configured for connection to one or more antennas only of a second polarization different from the first polarization. 6. The apparatus of claim 5 , wherein the at least one polarization former is further configured to introduce the phase shift by introducing a delay into at least one of the one first separate stream and the one second separate stream. 7. The apparatus of claim 5 , wherein there is a desired phase relation between the one first separate stream at the first antenna and the one second separate stream at the second antenna. 8. The apparatus of claim 7 , wherein the desired phase relation is that the first antenna and the second antenna have a same phase center. 9. An apparatus for a radio base station in a cellular telephony system, comprising: first and second output ports; first and second input connections for receiving first and second data streams, respectively; first and second combiners connected to the first and second output ports, respectively, wherein the first output port is configured for connection to one or more antennas only of a first polarization, and wherein the second output port is configured for connection to one or more antennas only of a second polarization different from the first polarization; first and second polarization formers arranged to receive the first and the second data stream, respectively, wherein each of the first and second polarization formers is configured to split the corresponding received data stream into a first separate stream and a second separate stream, introduce a phase shift between the first separate stream and the second separate stream; and output the first separate stream and the second separate stream to the first and to the second combiner, respectively; the first combiner configured to receive the first separate streams from the respective first and second polarization formers, to combine the first separate streams to produce a first combined signal, and to output the first combined signal on the first output port, the second combiner configured to receive second separate streams from the respective first and second polarization formers, to combine the second separate streams to produce a second combined signal, and to output the second combined signal on the second output port. 10. The apparatus of claim 9 , wherein the first and second polarization formers are configured to introduce a phase shift between the first and second data streams by introducing a delay into at least one of the first and second data streams. 11. The apparatus of claim 9 , wherein there is a desired phase relation between the first data stream at the first antenna and the second data stream at the second antenna. 12. The apparatus of claim 11 , wherein the desired phase relation is that the first antenna and the second antenna have a same phase center.
Polarisation diversity; Directional diversity · CPC title
for beam forming · CPC title
using two or more beams, i.e. beam diversity · CPC title
with power amplifiers · CPC title
MIMO systems · CPC title
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