IP Library Granted Patent US 12672196
Granted Patent B2
US 12672196 · App. 18/674,106 · Granted Jun 30, 2026

Systems and methods for radio configuration and validation

Inventors: Brent Josefiak (Rochester, NY); Daniel Harris (Rochester, NY)
Assignee: L3Harris Global Communications, Inc.
H04W76/20
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Quick Facts
Patent No.
US 12672196
App. No.
18/674,106
Granted
Jun 30, 2026
Kind
B2
Abstract

Systems and methods for re-configuring radios. The methods comprise: obtaining a machine-readable code by a mobile communication device from a first radio of the plurality of radios, the machine-readable code based on first digital configuration data for the first radio, the digital configuration data comprising at least one of an operational frequency, a time, a bandwidth, modulation coding data, forward error correction data, differential encoding data, cypher mode, a TRANSEC key, security key identifier, and a spreading code; and updating, by the mobile communication device, a second digital configuration data of a second radio communicatively coupled to the mobile communication device based on the first digital configuration data.

Claims (28)

1 . A method for re-configuring at least one of a plurality of radios, comprising:

obtaining a machine-readable code by a mobile communication device from a first radio of the plurality of radios, the machine-readable code based on first digital configuration data for the first radio, the first digital configuration data comprising at least one of an operational frequency, a time, a bandwidth, modulation coding data, forward error correction data, differential encoding data, cypher mode, a TRANSEC key, security key identifier, and a spreading code; and

updating, by the mobile communication device, a second digital configuration data of a second radio communicatively coupled to the mobile communication device based on the first digital configuration data;

wherein said obtaining the machine-readable code comprises reading or scanning the machine-readable code displayed on a display screen of the first radio, a display screen of a peripheral device connected to the first radio, or a display screen of another mobile communication device.

2 . The method according to claim 1 , wherein said updating causes an operational frequency, a time, a bandwidth, modulation coding data, forward error correction data, differential encoding data, cypher mode, a TRANSEC key, security key identifier, and or a spreading code of the second radio to be changed to match the corresponding portion of the first digital configuration data of the first radio.

3 . The method according to claim 1 , wherein the first digital configuration data further comprises a radio identification, pre-set system settings, and pre-set waveform settings.

4 . The method according to claim 1 , wherein the time comprises a time of day indicating when the first digital configuration data was generated by the first radio.

5 . The method according to claim 1 , further comprising detecting whether a pre-defined criteria is met as part of said updating or prior to said updating, wherein the pre-defined criteria specifies that at least a first type of configuration data associated with the first radio should match corresponding configuration data associated with the second radio, while at least a second type of configuration data associated with the first radio should be different from the corresponding configuration data associated with the first radio.

6 . The method according to claim 5 , wherein said first type of configuration data comprises a communication mode, a waveform type, a key identifier or index, a frequency, a frequency hopping parameter, or a time of day.

7 . The method according to claim 5 , wherein said second type of configuration data comprises an internet protocol address, a station name, a media access control address, or a power level.

8 . The method according to claim 5 , wherein the pre-defined criteria further specifies that at least a difference between a third type of configuration data associated with the first and second radios should fall within a defined range of values.

9 . The method according to claim 8 , wherein the third type of configuration data comprises a time of day.

10 . The method according to claim 1 , wherein said updating comprises:

selecting one of the first digital configuration data and the second digital configuration data to be a reference digital configuration data; and

either (a) modifying a non-selected one of the first and second digital configuration data based on the reference digital configuration data in a manner that resolves the communication incompatibility issue, or (b) generating new digital configuration data based on the reference digital configuration data.

11 . The method according to claim 10 , wherein said one of the first and second digital configuration data is selected based on one or more of a user identifier of the mobile communication device, a user identifier of another mobile communication device, a user identifier of the first radio, a user identifier of the second radio, user assigned priorities, radio assigned priorities, a location of the mobile communication device, a location of another mobile communication device, a location of the first radio, a location of the second radio, spectral sensing information, sensed environmental data, radio network health information, and a radio proximity.

12 . A system, comprising:

a processor; and

a non-transitory computer-readable storage medium comprising programming instructions that are configured to cause the processor to implement a method for re-configuring at least one of a plurality of radios in the field, wherein the programming instructions comprise instructions to:

obtain a machine-readable code from a first radio of the plurality of radios, the machine-readable code based on first digital configuration data for the first radio, the first digital configuration data comprising at least one of an operational frequency, a time, a bandwidth, modulation coding data, forward error correction data, differential encoding data, cypher mode, a TRANSEC key, security key identifier, and a spreading code; and

update a second digital configuration data of a second radio communicatively coupled to the mobile communication device based on the first digital configuration data;

wherein the machine-readable code is obtained by reading or scanning the machine-readable code displayed on a display screen of the first radio, a display screen of a peripheral device connected to the first radio, or a display screen of another mobile communication device.

13 . The system according to claim 12 , wherein an update of the second digital configuration data causes an operational frequency, a time, a bandwidth, modulation coding data, forward error correction data, differential encoding data, cypher mode, a TRANSEC key, security key identifier, and or a spreading code of the second radio to be changed to match the corresponding portion of the first digital configuration data of the first radio.

14 . The system according to claim 12 , wherein the first digital configuration data further comprises a radio identification, pre-set system settings, and pre-set waveform settings.

15 . The system according to claim 12 , wherein the programming instructions further comprise instructions to detect whether a pre-defined criteria is met (as part of said updating or prior to said updating), wherein the pre-defined criteria specifies that at least a first type of configuration data associated with the first radio should match corresponding configuration data associated with the second radio, while at least a second type of configuration data associated with the first radio should be different from the corresponding configuration data associated with the first radio.

16 . The system according to claim 15 , wherein said first type of configuration data comprises a communication mode, a waveform type, a key identifier or index, a frequency, a frequency hopping parameter, or a time of day.

17 . The system according to claim 15 , wherein said second type of configuration data comprises an internet protocol address, a station name, a media access control address, or a power level.

18 . The system according to claim 15 , wherein the pre-defined criteria further specifies that at least a difference between a third type of configuration data associated with the first and second radios should fall within a defined range of values, and the third type of configuration data comprises a time of day.