Spectrum access optimization including for 5g or other next generation user equipment
US-2021352487-A1 · Nov 11, 2021 · US
US12284667B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12284667-B2 |
| Application number | US-202217810655-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 5, 2022 |
| Priority date | Jul 5, 2022 |
| Publication date | Apr 22, 2025 |
| Grant date | Apr 22, 2025 |
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A communication system, a method, and a computer program product provide selecting and camping on primary band in idle mode in preparation for supporting a data connection for demanding application(s) to a network system. Preparation includes determining a communication demand requirement associated with the at least one application comprising at least one of data throughput greater than a throughput threshold and data latency less than a latency threshold. The communication system identifies, selects, and camps on the primary band in preparation for activation of the at least one application and configures the RF communication subsystem to use the at least one secondary band in preparation for activation of the at least one application and for establishment of the data connection with the communication network to operate in at least one of carrier aggregation mode and dual connection mode to satisfy a communication demand requirement.
Opening claim text (preview).
What is claimed is: 1. A communication system comprising: a memory that stores at least one application; a radio frequency (RF) communication subsystem having more than one communication chain comprising at least a first communication chain and a second communication chain configurable to operate in at least one of carrier aggregation mode and dual connection mode to satisfy a communication demand requirement; and a controller communicatively coupled to the memory and the RF communication subsystem, and which: while the RF communication subsystem is not currently connected to one or more network nodes: determines a communication demand requirement associated with the at least one application comprising at least one of data throughput greater than a throughput threshold and data latency less than a latency threshold; scans, via components of the RF communication subsystem, one or more available network nodes to assess communication capacity; identifies a combination of a primary band and at least one secondary band of the one or more available network nodes that satisfies the communication demand requirement; and selects and camps on the primary band in preparation for activation of the at least one application and configures the RF communication subsystem to use the at least one secondary band in preparation for activation of the at least one application and for establishment of a data connection with a communication network. 2. The communication system of claim 1 , wherein the controller determines the communication demand requirement by accessing a data entry in a lookup table stored in the memory that contains the communication demand requirement indexed to the at least one application. 3. The communication system of claim 2 , wherein the controller: monitors communication performance determined by the RF communication subsystem during one or more prior activations of the at least one application; and stores the communication demand requirement in the lookup table that is sufficient to support the at least one application during a subsequent activation based on the one or more prior activations. 4. The communication system of claim 1 , wherein the controller: scans, using the RF communication subsystem, the one or more available network nodes to identify signal strength and signal quality; identifies a default combination of a primary band and at least one secondary band of the one or more available network nodes that has a best combination of signal strength and signal quality; and in response to determining that the at least one application will not require a data connection with a communication network, selects and camps on the primary band and configures the RF communication subsystem to use the at least one secondary band of the default combination in preparation for activation of the at least one second application. 5. The communication system of claim 1 , wherein the communication demand requirement is defined for two or more downlink signals received from the one or more network nodes. 6. The communication system of claim 1 , wherein the communication demand requirement is defined for one or more uplink signals transmitted to the one or more network nodes. 7. The communication system of claim 1 , wherein the communication demand requirement is defined for one or more uplink signals transmitted to the one or more network nodes and further comprises at least one of a second data throughput greater than a second throughput threshold and a second data latency less than a second latency threshold on a downlink channel received from the one or more network nodes. 8. The communication system of claim 1 , wherein the controller: identifies from among multiple available combinations that satisfy the communication demand requirement, a first combination of the primary band and the at least one secondary band of the one or more network nodes that satisfies the communication demand requirement with a corresponding one or more of a highest value of the data throughput and a lowest value of the data latency; and in response to failing to select and camp on the primary band of the first combination: identifies a second combination of a primary band and at least one secondary band of the one or more network nodes that best meets the communication demand requirement with a corresponding one or more of a next highest value of the data throughput and a next lowest value of the data latency; and selects and camps on the primary band and configures the RF communication subsystem to use the at least one secondary band of the second combination. 9. A method comprising: in response to a radio frequency (RF) communication subsystem of a communication system not being currently connected to one or more network nodes, the RF communication subsystem having more than one communication chain comprising at least a first communication chain and a second communication chain configurable to operate in at least one of carrier aggregation mode and dual connection mode to satisfy a communication demand requirement of at least one application stored in memory of the communication system: determining a communication demand requirement associated with the at least one application comprising at least one of data throughput greater than a throughput threshold and data latency less than a latency threshold; scanning, via components of the RF communication subsystem, one or more available network nodes to assess communication capacity; identifying a combination of a primary band and at least one secondary band of the one or more available network nodes that satisfies the communication demand requirement; and selecting and camping on the primary band in preparation for activation of the at least one application and configures the RF communication subsystem to use the at least one secondary band in preparation for activation of the at least one application and for establishment of a data connection with a communication network. 10. The method of claim 9 , wherein determining the communication demand requirement comprises accessing a data entry in a lookup table stored in the memory that contains the communication demand requirement indexed to the at least one application. 11. The method of claim 10 , further comprising: monitoring communication performance determined by the RF communication subsystem during one or more prior activations of the at least one application; and storing the communication demand requirement in the lookup table that is sufficient to support the at least one application during a subsequent activation based on the one or more prior activations. 12. The method of claim 9 , further comprising: scanning, using the RF communication subsystem, the one or more available network nodes to identify signal strength and signal quality; identifying a default combination of a primary band and at least one secondary band of the one or more available network nodes that has a best combination of signal strength and signal quality; and in response to determining that the at least one application will not require a data connection with a communication network, selecting and camping on the primary band and configures the RF communication subsystem to use the at least one secondary band of the default combination in preparation for activation of the at least one second application. 13. The method of claim 9 , wherein the communication demand requirement is defined for two or more downlink signals received from the one or more network nodes. 14. The method of claim 9 , wherein the communication demand requirement is defined for one or
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