IP Library Granted Patent US 10,637,591
Granted Patent B1
US 10,637,591 · App. 16/351,646 · Granted Apr 28, 2020

Automated installed environment antenna characteristics determination

Inventor: Nicholas D. Butcher (Christchurch, NZ)
Assignee: Verizon Patent and Licensing Inc.
H04B17/12H04B17/103H04B17/13H04B17/14H04B17/21H04B17/26
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Quick Facts
Patent No.
US 10,637,591
App. No.
16/351,646
Granted
Apr 28, 2020
Kind
B1
Abstract

A network device receives first data associated with a first training transmission received at a second antenna from a first antenna, the first data describing characteristics of the first training transmission, characteristics of the first antenna, and characteristics of the second antenna. The network device receives second data associated with a second training transmission received at a third antenna from the first antenna, the second data describing characteristics of the second training transmission, characteristics of the first antenna, and characteristics of the third antenna. The network device stores the first data within a database as a first antenna profile associated with the second antenna, and stores the second data within the database as a second antenna profile associated with the third antenna. The network device retrieves and uses the first antenna profile for determining at least one first transmission characteristic associated with a fourth antenna transmitting to the second antenna.

Claims (69)

1. A method, comprising:

receiving, at a network device, first data associated with a first training transmission received at a second antenna from a first antenna, wherein the first data describes characteristics of the first training transmission, characteristics of the first antenna, and characteristics of the second antenna;

receiving, at the network device, second data associated with a second training transmission received at a third antenna from the first antenna, wherein the second data describes characteristics of the second training transmission, characteristics of the first antenna, and characteristics of the third antenna;

storing the first data within a database as a first antenna profile associated with the second antenna;

storing the second data within the database as a second antenna profile associated with the third antenna; and

retrieving and using, by the network device, the first antenna profile for determining at least one first transmission characteristic associated with a fourth antenna transmitting to the second antenna.

2. The method of claim 1 , further comprising:

retrieving and using, by the network device, the second antenna profile for determining at least one second transmission characteristic associated with a fifth antenna transmitting to the third antenna.

3. The method of claim 1 , wherein the at least one first transmission characteristic comprises a first distance between the fourth antenna and the second antenna, and wherein the determining the at least one first transmission characteristic comprises:

determining the first distance based on the first antenna profile.

4. The method of claim 1 , further comprising:

retrieving and using, by the network device, the second antenna profile for determining at least one second transmission characteristic associated with a fifth antenna transmitting to the third antenna,

wherein the at least one second transmission characteristic comprises a second distance between the fifth antenna and the third antenna, and wherein the determining the at least one second transmission characteristic comprises:

determining the second distance based on the second antenna profile.

5. The method of claim 1 , wherein the characteristics of the first training transmission comprise a transmit power (P T1 ) associated with the first training transmission, and an apparent receive power (P R1 ) of the first training transmission at the second antenna,

wherein the characteristics of the first antenna comprise a location (loc Tx1 ) of the first transmit antenna and an antenna gain G T1 of the first transmit antenna, and

wherein the characteristics of the second antenna comprise a location (loc Rx1 ) of the second antenna, an orientation of the second antenna relative to the first antenna, an installed environment of the second antenna, and an effective antenna gain G R1 of the second antenna.

6. The method of claim 5 , wherein the orientation of the second antenna relative to the first antenna is based on aN elevation and azimuth of the second antenna.

7. The method of claim 1 , wherein the characteristics of the second training transmission comprise a transmit power (P T2 ) associated with the second training transmission, and an apparent receive power (P R2 ) of the second training transmission at the third antenna.

8. The method of claim 7 , wherein the characteristics of the first antenna comprise:

a location (loc Tx1 ) of the first transmit antenna and an antenna gain G T1 of the first transmit antenna, and wherein the characteristics of the third antenna comprise a location (loc Rx2 ) of the third antenna, an orientation of the third antenna relative to the first antenna, an installed environment of the third antenna and an effective antenna gain G R2 of the third antenna.

9. The method of claim 1 , further comprising:

receiving, at the network device, third data associated with a third training transmission received at a fifth antenna from the first antenna, wherein the third data describes characteristics of the third training transmission, characteristics of the first antenna, and characteristics of the fifth antenna;

storing the third within the database as a third profile associated with the fifth antenna; and

retrieving and using, by the network device, the third antenna profile for determining a distance between the fifth antenna and a sixth antenna transmitting to the fifth antenna.

10. One or more network devices, comprising:

a communication interface, coupled to a database, and configured to:

receive first data associated with a first training transmission received at a second antenna from a first antenna, wherein the first data describes characteristics of the first training transmission, characteristics of the first antenna, and characteristics of the second antenna, and

receive second data associated with a second training transmission received at a third antenna from the first antenna, wherein the second data describes characteristics of the second training transmission, characteristics of the first antenna, and characteristics of the third antenna; and

at least one processing unit configured to:

store the first data within the database as a first antenna profile associated with the second antenna,

store the second data within the database as a second antenna profile associated with the third antenna, and

retrieve and use the first antenna profile for determining at least one first transmission characteristic associated with a fourth antenna transmitting to the second antenna.

11. The one or more network devices of claim 10 , wherein the at least one first transmission characteristic comprises a first distance between the fourth antenna and the second antenna, and wherein the at least one processing unit, when determining the at least one first transmission characteristic, is further configured to:

determine the first distance based on the first antenna profile.

12. The one or more network devices of claim 10 , wherein the at least one processing unit is further configured to:

retrieve and use the second antenna profile for determining at least one second transmission characteristic associated with a fifth antenna transmitting to the third antenna,

wherein the at least one second transmission characteristic comprises a second distance between the fifth antenna and the third antenna, and

wherein, when determining the at least one second transmission characteristic, the at least one processing unit is further configured to:

determine the second distance based on the second antenna profile.

13. The one or more network devices of claim 10 , wherein the characteristics of the first training transmission comprise a transmit power (P T1 ) associated with the first training transmission, and an apparent receive power (P R1 ) of the first training transmission at the second antenna,

wherein the characteristics of the first antenna comprise a location (loc Tx1 ) of the first transmit antenna and an antenna gain G T1 of the first transmit antenna, and

wherein the characteristics of the second antenna comprise a location (loc Rx1 ) of the second antenna, an orientation of the second antenna relative to the first antenna, an installed environment of the second antenna, and an effective antenna gain G R1 of the second antenna.

14. The one or more network devices of claim 10 , wherein the characteristics of the second training transmission comprise a transmit power (P T2 ) associated with the second training transmission, and an apparent receive power (P R2 ) of the second training transmission at the third antenna,

wherein the characteristics of the first antenna comprise a location (loc Tx1 ) of the first transmit antenna and an antenna gain G T1 of the first transmit antenna, and

wherein the characteristics of the third antenna comprise a location (loc Rx2 ) of the third antenna, an orientation of the third antenna relative to the first antenna, an installed environment of the third antenna, and an effective antenna gain G R2 of the third antenna.

15. The one or more network devices of claim 10 , wherein the at least one processing unit is further configured to:

receive third data associated with a third training transmission received at a fifth antenna from the first antenna, wherein the third data describes characteristics of the third training transmission, characteristics of the first antenna, and characteristics of the fifth antenna,

store the third within the database as a third profile associated with the fifth antenna, and

retrieve and use the third antenna profile for determining a distance between the fifth antenna and a sixth antenna transmitting to the fifth antenna.

16. A non-transitory storage medium storing instructions executable by a network device, wherein the instructions comprise instructions to cause the network device to:

receive first data associated with a first training transmission received at a second antenna from a first antenna, wherein the first data describes characteristics of the first training transmission, characteristics of the first antenna, and characteristics of the second antenna;

receive second data associated with a second training transmission received at a third antenna from the first antenna, wherein the second data describes characteristics of the second training transmission, characteristics of the first antenna, and characteristics of the third antenna;

store the first data within a database as a first antenna profile associated with the second antenna;

store the second data within the database as a second antenna profile associated with the third antenna; and

retrieve and use the first antenna profile for determining at least one first transmission characteristic associated with a fourth antenna transmitting to the second antenna.

17. The non-transitory storage medium of claim 16 , wherein the at least one first transmission characteristic comprises a first distance between the fourth antenna and the second antenna, and wherein the instructions comprise instructions to cause the network device to:

determine the first distance based on the first antenna profile.

18. The non-transitory storage medium of claim 16 , wherein the instructions comprise instructions to cause the network device to:

retrieve and use the second antenna profile for determining at least one second transmission characteristic associated with a fifth antenna transmitting to the third antenna,

wherein the at least one second transmission characteristic comprises a second distance between the fifth antenna and the third antenna, and

wherein the instructions further comprise instructions to cause the network device to determine the second distance based on the second antenna profile.

19. The non-transitory storage medium of claim 16 , wherein the characteristics of the first training transmission comprise a transmit power (P T1 ) associated with the first training transmission, and an apparent receive power (P R1 ) of the first training transmission at the second antenna,

wherein the characteristics of the first antenna comprise a location (loc Tx1 ) of the first transmit antenna and an antenna gain G T1 of the first transmit antenna, and

wherein the characteristics of the second antenna comprise a location (loc Rx1 ) of the second antenna, an orientation of the second antenna relative to the first antenna, an installed environment of the second antenna, and an effective antenna gain G R1 of the second antenna.

20. The non-transitory storage medium of claim 16 , wherein the characteristics of the second training transmission comprise:

a transmit power (P T2 ) associated with the second training transmission, and an apparent receive power (P R2 ) of the second training transmission at the third antenna,

wherein the characteristics of the first antenna comprise a location (loc Tx1 ) of the first transmit antenna and an antenna gain G T1 of the first transmit antenna, and

wherein the characteristics of the third antenna comprise a location (loc Rx2 ) of the third antenna, an orientation of the third antenna relative to the first antenna, an installed environment of the third antenna, and an effective antenna gain G R2 of the third antenna.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 13, 2019
From: BUTCHER, NICHOLAS D.
To: VERIZON PATENT AND LICENSING INC.
Reel/Frame 048581/0225 →
Cited By (1)
US 12,289,136