IP Library Granted Patent US 11,979,757
Granted Patent B2
US 11,979,757 · App. 17/721,720 · Granted May 7, 2024

Demand-based dynamic carrier scaling

Inventor: Rajesh Kumar Mishra (Westford, MA)
Assignee: Parallel Wireless, Inc.
H04W24/04H04B7/0413H04B7/0617H04L5/0064H04W72/0453H04W88/16
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Quick Facts
Patent No.
US 11,979,757
App. No.
17/721,720
Granted
May 7, 2024
Kind
B2
Abstract

Systems, methods and computer software are disclosed for demand-based dynamic carrier scaling. In one embodiment a method is disclosed, comprising: determining, at a gateway supporting dynamically created cells in a wireless network, whether there is a requirement for additional capacity; when there is a requirement for additional capacity, then providing, by the gateway, dynamically created cells as needed to handle the requirement for additional capacity; determining, at the gateway, whether there is a requirement for less capacity; and when there is a requirement for less capacity, then turning off, by the gateway, dynamically created cells as needed to handle the requirement for less capacity.

Claims (39)

1. A method for demand-based dynamic carrier scaling, comprising;

determining, at a gateway supporting dynamically created cells in a wireless network, whether there is a requirement for additional capacity;

when there is a requirement for additional capacity, then providing, by the gateway, dynamically created cells as needed to handle the requirement for additional capacity;

determining, at the gateway, whether there is a requirement for less capacity; and

when there is a requirement for less capacity, then turning off, by the gateway,

dynamically created cells as needed to handle the requirement for less capacity,

wherein the gateway is a virtualizing gateway situated between a radio access network and a core network in the wireless network, the virtualizing gateway performing virtualization of the dynamically created cells toward the core network, and

dynamically adding or turning off resources, wherein a resource may be one or more of bands, radio resources, transceivers, resource blocks, radio access technologies (RATs), frequencies, channels, higher power, lower power, coverage, cell edge augmentation, massive multiple-in, multiple-out (M-MIMO), beamforming, and 3GPP version compatibility.

2. The method of claim 1 further comprising migrating at least one existing user to at least one dynamically created cell.

3. The method of claim 1 further comprising migrating at least one existing user from at least one dynamically created cell.

4. The method of claim 1 wherein the wireless network is a Long Term Evolution (LTE) network having a first LTE cell operating at a first frequency in a first frequency band, and wherein when usage exceeds a threshold, the gateway activates a new dynamically generated LTE cell, operating at a same frequency in an adjacent frequency band.

5. The method of claim 1 wherein at least one dynamically created cell is at least one of 2G and 3G, and where additional dynamically created cells are added as one or more of 2G, 3G and 4G.

6. The method of claim 1 , further comprising interfacing with a 5G Standalone core network when needed data throughput reaches a certain threshold, and otherwise interfacing with a 5G non-standalone core network.

7. The method of claim 1 further comprising moving users from at least one of 3G, 4G, and 5G to 2G if user is using voice traffic.

8. The method of claim 1 , further comprising assigning, at the virtualizing gateway, a physical cell identity (PCI) for a dynamically created cell.

9. A non-transitory computer-readable medium containing instructions for providing demand-based dynamic carrier scaling, when executed, cause a gateway to perform steps comprising:

determining, at a gateway supporting dynamically created cells in a wireless network, whether there is a requirement for additional capacity;

when there is a requirement for additional capacity, then providing, by the gateway, dynamically created cells as needed to handle the requirement for additional capacity;

determining, at the gateway, whether there is a requirement for less capacity; and

when there is a requirement for less capacity, then turning off, by the gateway, dynamically created cells as needed to handle the requirement for less capacity,

wherein the gateway is a virtualizing gateway situated between a radio access network and a core network in the wireless network, the virtualizing gateway performing virtualization of the dynamically created cells toward the core network, and

dynamically adding or turning off resources, wherein a resource may be one or more of bands, radio resources, transceivers, resource blocks, radio access technologies (RATs), frequencies, channels, higher power, lower power, coverage, cell edge augmentation, massive multiple-in, multiple-out (M-MIMO), beamforming, and 3GPP version compatibility.

10. The computer-readable medium of claim 9 further comprising instructions for migrating at least one existing user to at least one dynamically created cell.

11. The computer-readable medium of claim 9 further comprising instructions for migrating at least one existing user from at least one dynamically created cell.

12. The computer-readable medium of claim 9 further comprising instructions wherein the wireless network is Long Term Evolution (LTE) network having a first LTE cell operating at a first frequency in a first frequency band, and wherein when usage exceeds a threshold, activating, using the gateway, a new dynamically generated LTE cell, operating at a same frequency in an adjacent frequency band.

13. The computer-readable medium of claim 9 further comprising instructions wherein at least one dynamically created cell is at least one of 2G and 3G, and where additional dynamically created cells are added as one or more of 2G, 3G and 4G.

14. The computer-readable medium of claim 9 , further comprising instructions further comprising interfacing with a 5G Standalone core network when needed data throughput reaches a certain threshold, and otherwise interfacing with a 5G non-standalone core network.

15. The computer-readable medium of claim 9 further comprising instructions for moving users from at least one of 3G, 4G, and 5G to 2G if user is using voice traffic.

16. The computer-readable medium of claim 9 , further comprising instructions for assigning, at the virtualizing gateway, a physical cell identity (PCI) for a dynamically created cell.

17. A system for providing demand-based dynamic carrier scaling, comprising:

a gateway;

at least one cell in communication with the gateway;

wherein the gateway supports dynamically created cells in a wireless network, and wherein the gateway determines whether there is a requirement for additional capacity;

when there is a requirement for additional capacity, then providing, by the gateway, dynamically created cells as needed to handle the requirement for additional capacity;

wherein the gateway determines whether there is a requirement for less capacity; and

when there is a requirement for less capacity, then turning off, by the gateway, dynamically created cells as needed to handle the requirement for less capacity_,

wherein the gateway is a virtualizing gateway situated between a radio access network and a core network in the wireless network, the virtualizing gateway performing virtualization of the dynamically created cells toward the core network; and

dynamically adding or turning off resources, wherein a resource may be one or more of bands, radio resources, transceivers, resource blocks, radio access technologies (RATs), frequencies, channels, higher power, lower power, coverage, cell edge augmentation, massive multiple-in, multiple-out (M-MIMO), beamforming, and 3GPP version compatibility.

18. The system of claim 17 , wherein the virtualizing gateway is configured to assign a physical cell identity (PCI) for a dynamically created cell.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2024
From: MISHRA, RAJESH KUMAR
To: PARALLEL WIRELESS, INC.
Reel/Frame 066779/0547 →
Continuity (3)
Continuation 16860051 · Apr 27, 2020
Provisional Application 62839083 · Apr 26, 2019
Related Publication 20220240109A1 · Jul 28, 2022