Control Module for a Lighting Fixture
US-2024063526-A1 · Feb 22, 2024 · US
US2016240912A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016240912-A1 |
| Application number | US-201615135830-A |
| Country | US |
| Kind code | A1 |
| Filing date | Apr 22, 2016 |
| Priority date | Dec 19, 2013 |
| Publication date | Aug 18, 2016 |
| Grant date | — |
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Official abstract text for this publication.
A full-duplex antenna includes a receive antenna, which is an omnidirectional antenna. A first transmit antenna is disposed on one side of the receive antenna and is a directional antenna. A reverse direction of a main lobe of a radiation pattern of the first transmit antenna points to the receive antenna. A second transmit antenna is disposed on the other side of the receive antenna. A distance between the second transmit antenna and the receive antenna is equal to a distance between the first transmit antenna and the receive antenna. The second transmit antenna is a directional antenna, and a reverse direction of a main lobe of a radiation pattern of the second transmit antenna points to the receive antenna.
Opening claim text (preview).
What is claimed is: 1 . A full-duplex antenna, comprising: a receive antenna; a first transmit antenna disposed on a first side of the receive antenna, wherein the first transmit antenna is a directional antenna and wherein a reverse direction of a main lobe of a radiation pattern of the first transmit antenna points to the receive antenna; and a second transmit antenna disposed on a second side of the receive antenna, the second side opposite the first side, wherein a distance between the second transmit antenna and the receive antenna is equal to a distance between the first transmit antenna and the receive antenna, wherein the second transmit antenna is a directional antenna, and wherein a reverse direction of a main lobe of a radiation pattern of the second transmit antenna points to the receive antenna. 2 . The full-duplex antenna according to claim 1 , wherein a polarization direction in which the receive antenna receives a signal transmitted by the first transmit antenna and a polarization direction in which the receive antenna receives a signal transmitted by the second transmit antenna are perpendicular to each other. 3 . The full-duplex antenna according to claim 1 , further comprising a signal generator, wherein a first output end of the signal generator is connected to the first transmit antenna by a first conducting wire, wherein a second output end of the signal generator is connected to the second transmit antenna by a second conducting wire, and wherein the signal generator is configured to generate two channels of transmit signals having the same amplitude and reverse phases and to separately send the two channels of transmit signals to the first transmit antenna and the second transmit antenna. 4 . The full-duplex antenna according to claim 3 , wherein the first conducting wire and the second conducting wire have an equal length. 5 . The full-duplex antenna according to claim 3 , further comprising a digital interference canceller, which is configured to cancel interference signals received by the receive antenna from the first transmit antenna and the second transmit antenna. 6 . The full-duplex antenna according to claim 5 , wherein the full-duplex antenna comprises multiple groups of receive and transmit channels, wherein each group of receive and transmit channel comprises a respective receive antenna, a respective first transmit antenna, a respective second transmit antenna, and a respective signal generator, wherein a first end of the digital interference canceller is configured to receive a receive signal that is output by the respective receive antenna in each group, a second end of the digital interference canceller is configured to output a transmit signal to the respective signal generator that is in each group, and distances from the respective first transmit antenna and the respective second transmit antenna that are in the same group of receive and transmit channel to any receive antenna are the same. 7 . The full-duplex antenna according to claim 5 , further comprising an analog-to-digital converter, wherein a first end of the analog-to-digital converter is connected to the receive antenna, and a second end of the analog-to-digital converter is connected to the digital interference canceller, the analog-to-digital converter being configured to convert an analog receive signal received by the receive antenna into a digital receive signal and to send the digital receive signal to the digital interference canceller. 8 . The full-duplex antenna according to claim 5 , further comprises a digital-to-analog converter, wherein a first end of the digital-to-analog converter is connected to the signal generator, and a second end of the digital-to-analog converter is connected to the digital interference canceller, the digital-to-analog converter being configured to convert a digital transmit signal sent by the digital interference canceller into an analog transmit signal and to send the analog transmit signal to the signal generator. 9 . The full-duplex antenna according to claim 1 , wherein the radiation pattern of the first transmit antenna has no side lobe and wherein the second transmit antenna has no side lobe. 10 . The full-duplex antenna according to claim 1 , wherein the full-duplex antenna is configured to implement omnidirectional radiation after a direction of the main lobe of the radiation pattern of the first transmit antenna and a direction of the main lobe of the radiation pattern of the second transmit antenna are overlapped, wherein the omnidirectional radiation enables a transmit signal to be received in any direction of 360 degrees. 11 . A mobile terminal, comprising a full-duplex antenna that comprises: a receive antenna; a first transmit antenna disposed on a first side of the receive antenna, wherein the first transmit antenna is a directional antenna and wherein a reverse direction of a main lobe of a radiation pattern of the first transmit antenna points to the receive antenna; and a second transmit antenna, disposed on a second side of the receive antenna, the second side opposite the first side, wherein a distance between the second transmit antenna and the receive antenna is equal to a distance between the first transmit antenna and the receive antenna, wherein the second transmit antenna is a directional antenna, and wherein a reverse direction of a main lobe of a radiation pattern of the second transmit antenna points to the receive antenna. 12 . The mobile terminal according to claim 11 , wherein a polarization direction in which the receive antenna receives a signal transmitted by the first transmit antenna and a polarization direction in which the receive antenna receives a signal transmitted by the second transmit antenna are perpendicular to each other. 13 . The mobile terminal according to claim 11 , further comprising a signal generator, wherein a first output end of the signal generator is connected to the first transmit antenna by a first conducting wire, wherein a second output end of the signal generator is connected to the second transmit antenna by a second conducting wire, and wherein the signal generator is configured to generate two channels of transmit signals having the same amplitude and reverse phases and to separately send the two channels of transmit signals to the first transmit antenna and the second transmit antenna. 14 . The mobile terminal according to claim 13 , wherein the first conducting wire and the second conducting wire have an equal length. 15 . The mobile terminal according to claim 13 , further comprising a digital interference canceler, which is configured to cancel interference signals received by the receive antenna from the first transmit antenna and the second transmit antenna. 16 . The mobile terminal according to claim 15 , wherein the full-duplex antenna comprises multiple groups of receive and transmit channels, wherein each group of receive and transmit channel comprises a respective receive antenna, a respective first transmit antenna, a respective second transmit antenna, and a respective signal generator, wherein a first end of the digital interference canceller is configured to receive a receive signal that is output by the respective receive antenna in each group, a second end of the digital interference canceller is configured to output a transmit signal to the respective signal generator that is in each group, and distances from the respective first transmit antenna and the respective second transmit antenna that are in the same group of receive and transmit channel to any rece
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