IP Library Granted Patent US 11,303,037
Granted Patent B2
US 11,303,037 · App. 16/858,347 · Granted Apr 12, 2022

Synchronized multiple-radio antenna systems and meihods

Inventors: Richard J. Keniuk (Cary, IL); Gary D. Schulz (Cary, IL)
Assignee: Ubiquiti Inc.
H01Q19/10H01Q1/24H01Q15/16H01Q19/13H01Q21/00H04B1/00
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Quick Facts
Patent No.
US 11,303,037
App. No.
16/858,347
Granted
Apr 12, 2022
Kind
B2
Abstract

Multi-radio antenna apparatuses and stations for wireless networks including multiple radios coupled to a single transmit/receive antenna, in which the antenna is highly synchronized by an external (e.g., GPS) signal. These multi-radio antenna systems may provide highly resilient links. Synchronization may allow these apparatuses to organically scale the transmission throughput while preventing data loss. The single transmit/receive antenna may have a single dish or a compound (e.g., a single pair of separate transmitting and receiving dishes) and connections for two or more radios.

Claims (55)

1. An apparatus for transmitting radio signals comprising:

a first radio and a second radio;

at least one shared antenna from which the first and second radios both transmit and receive;

at least one global positioning system (GPS) receiver; and

a multiplexer configured to connect to the first and second radios, the multiplexer comprising a controller configured to switch operation of the apparatus from a first, externally synchronized, mode, in which the first and second radios are synchronized based on a GPS timing signal, and a second mode that is not externally synchronized, wherein the first mode comprises a time domain mode, in which the first and second radios operate a time domain, and wherein the second mode comprises a frequency domain operational mode, in which the first and second radios operate a frequency domain.

2. An apparatus for transmitting radio signals comprising:

a first radio and a second radio;

at least one shared antenna from which the first and second radios both transmit and receive;

at least one global positioning system (GPS) receiver; and

a multiplexer configured to connect to the first and second radios, the multiplexer comprising a controller configured to switch operation of the apparatus from a first, externally synchronized, mode, in which the first and second radios are synchronized based on a GPS timing signal, and a second mode that is not externally synchronized, wherein the first and second radios operate on a same duty cycle in the first mode.

3. The apparatus of claim 1 , wherein the first and second radios are periodically synchronized in the first mode.

4. The apparatus of claim 1 , wherein the multiplexer comprises a passive power divider/combiner configured to couple to the first and second radios and to passively combine radio frequency (RF) signals from the first and second radios in the first mode.

5. The apparatus of claim 4 , wherein the passive power divider/combiner is configured to output the combined RF signals to an antenna and to divide RF signals from the antenna between the first and second radios.

6. The apparatus of claim 1 , wherein the multiplexer is configured to switch between the first and second modes automatically based on a presence or absence of the GPS timing signal.

7. The apparatus of claim 1 , wherein the multiplexer is configured to switch between the first and second modes based on a strength of the GPS timing signal.

8. An apparatus for transmitting radio signals comprising:

a first radio and a second radio;

at least one shared antenna from which the first and second radios both transmit and receive;

at least one global positioning system (GPS) receiver; and

a multiplexer configured to connect to the first and second radios, the multiplexer comprising a controller configured to switch operation of the apparatus from a first, externally synchronized, mode, in which the first and second radios are synchronized based on a GPS timing signal, and a second mode that is not externally synchronized, wherein the multiplexer is configured to switch between the first and second modes based on available bandwidths.

9. The apparatus of claim 1 , wherein each of the first and second radios is configured to independently receive the GPS timing signal.

10. An apparatus for transmitting radio signals comprising:

a first radio and a second radio;

at least one shared antenna from which the first and second radios both transmit and receive;

at least one global positioning system (GPS) receiver; and

a multiplexer configured to connect to the first and second radios, the multiplexer comprising a controller configured to switch operation of the apparatus from a first, externally synchronized, mode, in which the first and second radios are synchronized based on a GPS timing signal, and a second mode that is not externally synchronized, wherein when the first and second radios transmit synchronously and receive synchronously according to a same duty cycle.

11. An apparatus for transmitting radio signals comprising:

a first radio and a second radio;

at least one shared antenna from which the first and second radios both transmit and receive;

at least one global positioning system (GPS) receiver; and

a multiplexer configured to connect to the first and second radios, the multiplexer comprising a controller configured to switch operation of the apparatus from a first, externally synchronized, mode, in which the first and second radios are synchronized based on a GPS timing signal, and a second mode that is not externally synchronized, wherein the first and second radios are configured to operate in adjacent frequency channels without a guard band between the adjacent frequency channels in the first mode.

12. An apparatus for transmitting radio signals comprising:

a first port configured to receive a first radio;

a second port configured to receive a second radio;

at least one shared antenna from which the first and second radios both transmit and receive;

a multiplexer configured to connect to the first and second radios, the multiplexer comprising a controller configured to switch operation of the apparatus from a first, externally synchronized, mode, in which the first and second radios are synchronized based on a GPS timing signal, and a second mode that is not externally synchronized wherein the first mode comprises a time domain mode, in which the first and second radios operate a time domain, and wherein the second mode comprises a frequency domain operational mode, in which the first and second radios operate a frequency domain; and

a passive power divider/combiner configured to couple to the first and second radios and to passively combine radio frequency (RF) signals from the first and second radios in the first mode.

13. A method of transmitting radio signals from a first radio and a second radio that share at least one antenna, the method comprising:

detecting a global positioning system (GPS) timing signal;

operating the first and second radios in a first, externally synchronized, mode in the presence of a GPS timing signal wherein the first and second radios are synchronized based on the GPS timing signal;

operating the first and second radios in a second mode that is not externally synchronized in the absence of a GPS timing signal; and

transmitting radio frequency (RF) signals from the first and second radios from at least one antenna, wherein the RF signals from the first and second radios are simultaneously transmitted in the first mode, wherein the first and second radios operate in a time domain in the first mode, and in a frequency domain in the second mode.

14. A method of transmitting radio signals from a first radio and a second radio that share at least one antenna, the method comprising:

detecting a global positioning system (GPS) timing signal;

operating the first and second radios in a first, externally synchronized, mode in the presence of a GPS timing signal wherein the first and second radios are synchronized based on the GPS timing signal;

operating the first and second radios in a second mode that is not externally synchronized in the absence of a GPS timing signal; and

transmitting radio frequency (RF) signals from the first and second radios from the at least one antenna, wherein the RF signals from the first and second radios are simultaneously transmitted in the first mode, wherein the first and second radios operate on a same duty cycle in the first mode.

15. The method of claim 13 , further comprising passively combining the RF signals from the first and second radios in the first mode.

16. The method of claim 13 , further comprising automatically switching between the first and second modes based on a presence or a strength of the GPS timing signal.

17. The method of claim 13 , further comprising repeatedly synchronizing the first and second radios in the first mode.

18. A method of transmitting radio signals from a first radio and a second radio that share at least one antenna, the method comprising:

detecting a global positioning system (GPS) timing signal;

operating the first and second radios in a first, externally synchronized, mode in the presence of a GPS timing signal wherein the first and second radios are synchronized based on the GPS timing signal;

operating the first and second radios in a second mode that is not externally synchronized in the absence of a GPS timing signal; and

transmitting radio frequency (RF) signals from the first and second radios from the at least one antenna, wherein the RF signals from the first and second radios are simultaneously transmitted in the first mode, further comprising operating the first and second radios in adjacent frequency channels without a guard band between the adjacent frequency channels in the first mode.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2020
From: KENIUK, RICHARD J.; SCHULZ, GARY D.
To: UBIQUITI NETWORKS, INC.
Reel/Frame 052859/0089 →
CHANGE OF NAME Recorded Jun 5, 2020
From: UBIQUITI NETWORKS, INC.
To: UBIQUITI INC.
Reel/Frame 052859/0222 →
Continuity (7)
Continuation 16452332 · Jun 25, 2019
Continuation 16140389 · Sep 24, 2018
Continuation 15702658 · Sep 12, 2017
Continuation 15289487 · Oct 10, 2016
Provisional Application 62277862 · Jan 12, 2016
Provisional Application 62239831 · Oct 9, 2015
Related Publication 20200259266A1 · Aug 13, 2020
Cited By (1)
US 12,347,930