IP Library Granted Patent US 12,342,220
Granted Patent B2
US 12,342,220 · App. 18/731,521 · Granted Jun 24, 2025

System and method for establishing a virtual access point

Inventor: Marek Hajduczenia (Castle Rock, CO)
Assignee: Charter Communications Operating, LLC
H04W28/0862H04W48/20H04W76/19H04W80/02H04W84/12H04W88/08H04W88/12
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Quick Facts
Patent No.
US 12,342,220
App. No.
18/731,521
Granted
Jun 24, 2025
Kind
B2
Abstract

System and method for establishing a virtual access point (vAP) is described. A wireless network includes a router to provide access to external networks, physical access points (pAPs) to provide radio communications access to a user device, and a controller to form a vPA by layer two link aggregating the pAPs using access point and configuration information and send a virtual service set identifier (vSSID) to the pAPs. The vAP having a layer two data plane and control plane. The vAP provides a wireless coverage area equivalent to the pAPs using the vSSID, enable a user device to connect to the data plane via a data link, connect to the control place via layer two control links, and radio frequency connect to the pAPs. The controller and the pAPs configured to manage user data traffic flow between the router and the user device via the control and the data planes.

Claims (36)

1. A wireless local area network, comprising:

a plurality of physical access points connected to a router configured to provide access to external networks, each physical access point configured to provide radio communications access to a user device;

a controller configured to form a virtual access point with a layer two data plane, a layer two control plane, and a virtual service set identifier by layer two link aggregating the plurality of physical access points;

the virtual access point configured to provide a forwarding mode and a non-forwarding mode for a physical access point with respect to the user device, the forwarding mode enables participation on the layer two data plane and the layer two control plane to forward user data traffic flow and the non-forwarding mode enables participation on the layer two control plane to enable switching to the forwarding mode absent an initialization configuration; and

the controller and the plurality of physical access points configured to manage user data traffic flow between the router and the user device via the layer two control plane and the layer two data plane.

2. The wireless local area network of claim 1 , wherein the physical access point in the non-forwarding mode is a non-participant with respect to the layer two data plane.

3. The wireless local area network of claim 1 , wherein the controller and the plurality of physical access points are further configured to switch a physical access point to the non-forwarding mode when the user device loses a radio frequency connection with the physical access point.

4. The wireless local area network of claim 3 , wherein the controller and the plurality of physical access points further configured to switch the physical access point in the non-forwarding mode to the forwarding mode when the radio frequency connection is re-established with the user device.

5. The wireless local area network of claim 1 , wherein the controller and the router are an integrated device.

6. The wireless local area network of claim 1 , wherein some functionality of the controller is distributively provisioned amongst the plurality of physical access points.

7. The wireless local area network of claim 1 , wherein the controller is distributively provisioned amongst the plurality of physical access points.

8. The wireless local area network of claim 1 , wherein the controller is further configured to form multiple virtual access points using subsets of the plurality of physical access points.

9. A method for provisioning a virtual access point, the method comprising:

forming, by a controller, a virtual access point by layer two link aggregating a plurality of physical access points which are connected to a router configured to provide access to external networks and wherein each physical access point is configured to provide radio communications access to a user device, the virtual access point having a layer two data plane and a layer two control plane;

providing, by the virtual access point, a forwarding mode and a non-forwarding mode for a physical access point with respect to the user device, wherein the physical access point is a non-participant with respect to the layer two data plane and a participant with respect to the layer two control plane when in the non-forwarding mode; and

switching, by the controller and the plurality of physical access points, the physical access point to the forwarding mode from the non-forwarding mode when a radio frequency connection is established between the physical access point and the user device.

10. The method of claim 9 , the method further comprising:

enabling, by the virtual access point, the user device to connect to the layer two data plane via a data link.

11. The method of claim 9 , the method further comprising:

enabling, by the virtual access point, the user device to connect to the layer two control plane via a control link.

12. The method of claim 9 , the method further comprising:

enabling, by the virtual access point, the user device to radio frequency connect to the plurality of physical access points.

13. The method of claim 9 , wherein the layer two data plane is provisioned with load balancing mechanisms to efficiently manage user data traffic flow between the plurality of physical access points and the router.

14. The method of claim 9 , the method further comprising:

switching, by the controller and the plurality of physical access points, a physical access point to the non-forwarding mode when the user device loses a radio frequency connection with the physical access point.

15. The method of claim 9 , wherein the forwarding mode enables participation on the layer two data plane and the layer two control plane and the non-forwarding mode enables switching to the forwarding mode absent an initialization configuration.

16. The method of claim 9 , the method further comprising:

forming, by the controller, multiple virtual access points using subsets of the plurality of physical access points.

17. The method of claim 9 , wherein the controller is distributively provisioned amongst the plurality of physical access points.

18. A method for virtual access point networking, the method comprising:

establishing, by a controller, a virtual access node by layer two link aggregation of multiple physical access nodes deployed in a location and connected to a router, the virtual access node having a layer two data plane and a layer two control plane; and

providing, by the virtual access node, a forwarding mode and a non-forwarding mode for a physical access point with respect to a client station, wherein the forwarding mode enables participation on the layer two data plane and the layer two control plane to forward user data traffic flow and the non-forwarding mode enables participation on the layer two control plane to enable switching to the forwarding mode absent an initialization configuration.

19. The method of claim 18 , the method further comprising:

switching, by the controller and the multiple physical access nodes, the physical access point to the non-forwarding mode from the forwarding mode when a radio frequency connection is lost between the physical access point and the client station.

20. The method of claim 19 , the method further comprising:

switching, by the controller and the multiple physical access nodes, the physical access point to the forwarding mode from the non-forwarding mode when a radio frequency connection is re-established between the physical access point and the client station.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2024
From: HAJDUCZENIA, MAREK
To: CHARTER COMMUNICATIONS OPERATING, LLC
Reel/Frame 067600/0635 →
Continuity (3)
Continuation 18350045 · Jul 11, 2023
Division 17079782 · Oct 26, 2020
Related Publication 20240323764A1 · Sep 26, 2024
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