IP Library Granted Patent US 11,678,226
Granted Patent B2
US 11,678,226 · App. 17/359,298 · Granted Jun 13, 2023

Methods and apparatus for providing wireless services to a customer premises

Inventors: Volkan Sevindik (Parker, CO); Muhib T. Oduwaiye (Aurora, CO); Haider Syed (Parker, CO)
Assignee: Charter Communications Operating, LLC
H04W28/08H04W24/08H04W28/0284H04W40/12H04W80/02
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Quick Facts
Patent No.
US 11,678,226
App. No.
17/359,298
Granted
Jun 13, 2023
Kind
B2
Abstract

Methods and apparatus for providing data services to devices at a customer premises. An exemplary method embodiment includes the steps of: switching from a first mode of operation to a second mode of operation with respect to providing data services to a user equipment device located at a customer premises upon detection of a first condition at the customer premises by a wireless base station; receiving, after switching into the second mode of operation, at the wireless base station a first data service request from the user equipment device; transmitting, in response to the first data service request, one or more data packets of a first data packet stream to the user equipment device via a first transmission path and transmitting one or more additional data packets of the first packet stream to the user equipment device via a second transmission path.

Claims (44)

1. A method of operating a customer premises equipment device comprising:

establishing connections between the customer premises equipment device and a plurality of Wi-Fi Access Points, said customer premises equipment device and said plurality of Wi-Fi Access Points being located at a first customer premises;

monitoring, by the customer premises equipment device, for a first condition at the first customer premises;

transmitting instructions from the customer premises equipment device to one of the plurality of Wi-Fi Access Points to switch from a first mode of operation to a second mode of operation with respect to providing data services to a first user equipment device located at the first customer premises; and

wherein the first mode of operation is a non-MAC layer conversion mode of operation and the second mode of operation is a MAC layer conversion mode of operation.

2. The method of operating a customer premises equipment device of claim 1 , further comprising:

establishing a wireless connection between the customer premises equipment device and a wireless base station.

3. The method of operating a customer premises equipment device of claim 2 , wherein the customer premises equipment device is positioned on a first communications path between the wireless base station and the one Wi-Fi Access Point of the plurality of Wi-Fi Access Points providing data services to the first user equipment device.

4. The method of operating a customer premises equipment device of claim 1 , wherein said MAC layer conversion mode of operation includes a Wi-Fi Access Point adding a MAC converter layer on top of a MAC layer to encode packets received in a first wireless protocol format into a Wi-Fi protocol format.

5. The method of operating a customer premises equipment device of claim 1 , wherein the first condition is a Wi-Fi Access Point congestion condition.

6. The method of operating a customer premises equipment device of claim 5 , wherein said monitoring for the Wi-Fi Access Point congestion condition includes monitoring for downlink congestion in each link connecting the customer premises equipment device and one or more of the plurality of Wi-Fi Access Points.

7. The method of operating a customer premises equipment device of claim 1 , wherein the first condition is a Wi-Fi Access Point overload condition.

8. The method of operating a customer premises equipment device of claim 7 , wherein said monitoring, by the customer premises equipment device, for the Wi-Fi Access Point overload condition at the first customer premises includes: monitoring one or more Wi-Fi Access Point downlink buffers for a buffer overflow condition or a condition in which the number of data packets in one or more Wi-Fi Access Point downlink buffers exceeds a first threshold value for a predetermined amount of time.

9. The communications method of operating a customer premises equipment device of claim 8 further comprising:

detecting, by the customer premises equipment device, that a Wi-Fi Access Point overload condition exists with respect to a Wi-Fi Access Point when said customer premise equipment device determines that the Wi-Fi Access Point downlink buffer corresponding to the Wi-Fi Access Point is experiencing a buffer overflow condition or is experiencing a condition in which the number of data packets in the Wi-Fi Access Point downlink buffer corresponding to the Wi-Fi Access Point exceeds the first threshold value for the predetermined amount of time; and

in response to said Wi-Fi Access Point overload condition being detected: (i) generating, by the customer premises equipment device, a first message indicating that there is a Wi-Fi Access Point overload condition; and (ii) communicating said first message indicating the Wi-Fi Access Point overload condition to a wireless base station.

10. A customer premises equipment device comprising:

memory; and

a processor included in the customer premises equipment device which controls the customer premises equipment device to perform the following operations:

establish connections between the customer premises equipment device and a plurality of Wi-Fi Access Points, said customer premises equipment device and said plurality of Wi-Fi Access Points being located at a first customer premises;

monitor for a first condition at the first customer premises;

transmit instructions from the customer premises equipment device to one of the plurality of Wi-Fi Access Points to switch from a first mode of operation to a second mode of operation with respect to providing data services to a first user equipment device located at the first customer premises; and

wherein the first mode of operation is a non-MAC layer conversion mode of operation and the second mode of operation is a MAC layer conversion mode of operation.

11. The customer premises equipment device of claim 10 , wherein the processor further controls the customer premises equipment device to perform the following additional operation:

establish a wireless connection between the customer premises equipment device and a wireless base station.

12. The customer premises equipment device of claim 11 , wherein the customer premises equipment device is positioned on a first communications path between the wireless base station and the one Wi-Fi Access Point of the plurality of Wi-Fi Access Points providing data services to the first user equipment device.

13. The customer premises equipment device of claim 10 , wherein said MAC layer conversion mode of operation includes a Wi-Fi Access Point adding a MAC converter layer on top of a MAC layer to encode packets received in a first wireless protocol format into a Wi-Fi protocol format.

14. The customer premises equipment device of claim 10 , wherein the first condition is a Wi-Fi Access Point congestion condition.

15. The customer premises equipment device of claim 14 , wherein monitoring for the Wi-Fi Access Point congestion condition includes monitoring for downlink congestion in each link connecting the customer premises equipment device and one or more of the plurality of Wi-Fi Access Points.

16. The customer premises equipment device of claim 10 , wherein the first condition is a Wi-Fi Access Point overload condition.

17. The customer premises equipment device of claim 16 , wherein said monitoring, for the Wi-Fi Access Point overload condition at the first customer premises includes: monitoring one or more Wi-Fi Access Point downlink buffers for a buffer overflow condition or a condition in which the number of data packets in one or more Wi-Fi Access Point downlink buffers exceeds a first threshold value for a predetermined amount of time.

18. The customer premises equipment device of claim 17 ,

wherein the processor further controls the customer premises equipment device to perform the following additional operations:

detect that a Wi-Fi Access Point overload condition exists with respect to a Wi-Fi Access Point when said customer premise equipment device determines that the Wi-Fi Access Point downlink buffer corresponding to the Wi-Fi Access Point is experiencing a buffer overflow condition or is experiencing a condition in which the number of data packets in the Wi-Fi Access Point downlink buffer corresponding to the Wi-Fi Access Point exceeds the first threshold value for the predetermined amount of time; and

in response to said Wi-Fi Access Point overload condition being detected:

(i) generate a first message indicating that there is a Wi-Fi Access Point overload condition; and

(ii) communicate said first message indicating the Wi-Fi Access Point overload condition to a wireless base station.

19. A non-transitory computer readable medium including computer executable instructions which when executed by a processor control a customer premises equipment device to perform the steps of:

establishing connections between the customer premises equipment device and a plurality of Wi-Fi Access Points, said customer premises equipment device and said plurality of Wi-Fi Access Points being located at a first customer premises;

monitoring, by the customer premises equipment device, for a first condition at the first customer premises;

transmitting instructions from the customer premises equipment device to one of the plurality of Wi-Fi Access Points to switch from a first mode of operation to a second mode of operation with respect to providing data services to a first user equipment device located at the first customer premises; and

wherein the first mode of operation is a non-MAC layer conversion mode of operation and the second mode of operation is a MAC layer conversion mode of operation.

20. The non-transitory computer readable medium of claim 19 ,

wherein said MAC layer conversion mode of operation includes a Wi-Fi Access Point adding a MAC converter layer on top of a MAC layer to encode packets received in a first wireless protocol format into a Wi-Fi protocol format.

Assignments (3)
SECURITY INTEREST Recorded Sep 22, 2022
From: CHARTER COMMUNICATIONS OPERATING, LLC; TIME WARNER CABLE ENTERPRISES, LLC
To: WELLS FARGO TRUST COMPANY, N.A.
Reel/Frame 061503/0937 →
SECURITY INTEREST Recorded Sep 22, 2022
From: CHARTER COMMUNICATIONS OPERATING, LLC; TIME WARNER CABLE ENTERPRISES, LLC
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
Reel/Frame 061504/0307 →
SUPPLEMENTAL SECURITY AGREEMENT Recorded Aug 10, 2022
From: CHARTER COMMUNICATIONS OPERATING, LLC; TIME WARNER CABLE ENTERPRISES LLC
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 061633/0069 →
Continuity (2)
Continuation 16729246 · Dec 27, 2019
Related Publication 20210321296A1 · Oct 14, 2021