IP Library Granted Patent US 9,750,025
Granted Patent B2
US 9,750,025 · App. 14/731,987 · Granted Aug 29, 2017

Resource allocation in a wireless mesh network environment

Inventors: Don Gunasekara (Reston, VA); Harriet DuBois (Herndon, VA); Kevin Caldwell (Vienna, VA); Laxman Nallani (Herndon, VA)
Assignee: Time Warner Cable Enterprises LLC
H04W72/0453H04L45/02H04L47/70H04L47/828H04W28/16H04W28/20H04W72/0406H04W92/20
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Quick Facts
Patent No.
US 9,750,025
App. No.
14/731,987
Granted
Aug 29, 2017
Kind
B2
Abstract

A mesh network management resource receives connectivity status information indicating wireless connectivity amongst multiple wirelessly interconnected access points in a mesh network and multiple clients. Based on the received connectivity status information, the mesh network management resource allocates portions of wireless bandwidth in the mesh network to wirelessly communicate between a root access point in the mesh network and each of the multiple interconnected access points. The root access point transmits messages over the allocated portions of wireless bandwidth from the root access point through the multiple interconnected access points to the multiple clients. According to one configuration, the mesh network management resource allocates use of wireless bandwidth amongst the wirelessly interconnected access points in the mesh network based at least in part on class of service information assigned to different subscribers in the mesh network environment.

Claims (98)

1. A method comprising:

receiving a first data rate value, the first data rate value assigned to a first client wirelessly coupled to a first access point in a mesh network of multiple wirelessly interconnected access points;

receiving a second data rate value, the second data rate value assigned to a second client wirelessly coupled to a second access point in the mesh network of multiple wirelessly interconnected access points, the first access point operable to wirelessly communicate with both the first client and the second access point; and

allocating use of wireless bandwidth amongst the wirelessly interconnected access points in the mesh network in accordance with the first data rate value and the second data rate value;

the method further comprising:

receiving notification of a fault condition in the mesh network; and

in response to the fault condition, adjusting an amount of the wireless bandwidth assigned to the multiple interconnected access points to circumvent a location where the fault condition occurs in the mesh network.

2. The method as in claim 1 , wherein allocating use of the wireless bandwidth includes:

producing a summation of the first data rate value and the second data rate value; and

utilizing the summation as a basis to allocate a sufficient portion of available wireless bandwidth in the mesh network to support transmission of data as specified by the first data rate value to the first client and to support transmission of data as specified by the second data rate value to the second client.

3. The method as in claim 2 further comprising:

utilizing a map of the mesh network to identify that the first access point lies in a communication path including the first access point and the second access point; and

producing the summation in response to detecting that communications to the second client pass through the communication path including the first access point and the second access point.

4. The method as in claim 1 , wherein allocating use of the wireless bandwidth includes:

producing a summation of the first data rate value and the second data rate value; and

utilizing the summation as a basis to allocate a sufficient portion of available wireless bandwidth in the mesh network to support transmission of an amount of data as specified by the summation between a root access point in the mesh network and the first access point, the root access point being a gateway resource facilitating distribution of communications to the first client and the second client through the mesh network.

5. The method as in claim 1 further comprising:

receiving connectivity status information indicating wireless connectivity amongst the multiple wirelessly interconnected access points in the mesh network; and

allocating the wireless bandwidth based at least in part on the received connectivity status information.

6. The method as in claim 5 further comprising:

conveying messages over the allocated wireless bandwidth from a root access point in the mesh network through the multiple wirelessly interconnected access points to the first client and the second client.

7. The method as in claim 1 further comprising:

processing received connectivity status information to identify a number of clients wirelessly coupled to each of the multiple interconnected access points in the mesh network; and

allocating the portions of wireless bandwidth in the mesh network based on a magnitude of the number of clients wirelessly coupled to each of the multiple interconnected access points.

8. The method as in claim 1 , wherein allocating the use of the wireless bandwidth comprises:

assigning a first portion of available wireless bandwidth in the mesh network between a root access point and the first wireless access point based on the first data rate value; and

assigning a second portion of available wireless bandwidth in the mesh network between the root access point and the second wireless access point based on the second data rate value.

9. The method as in claim 1 further comprising:

producing a summation value of the first data rate value and the second data rate value; and

utilizing the summation value to set a magnitude of a given portion of the available wireless bandwidth to provide the first data rate value to the first client and the second data rate value to the second client, the given portion of the available wireless bandwidth supporting conveyance of communications to a combination of the first client and the second client.

10. The method as in claim 1 further comprising:

at a root access point in the mesh network, receiving communications directed to the first client and the second client; and

initiating distribution of the communications over the allocated portions of bandwidth to the multiple interconnected access points, the multiple interconnected access points forwarding the communications to the first client and the second client.

11. The method as in claim 1 further comprising: in accordance with allocation of the wireless bandwidth in the mesh network: distributing the first portion of data from the first access point over a first wireless communication link to the first client; and distributing the second portion of data from the first access point over a second wireless communication link to the second access point, the second access point wirelessly distributing the second portion of data to the second client.

12. The method as in claim 1 further comprising:

wherein allocating use of the wireless bandwidth includes:

producing a summation value, the summation value being a sum of the first data rate value and the second data rate value; and

utilizing the summation value as a basis to allocate a first portion of the wireless bandwidth in the mesh network to convey data at a rate as specified by the summation in a downstream direction from a root access point in the mesh network to the first access point.

13. The method as in claim 12 , wherein allocating use of the wireless bandwidth further includes:

in accordance with the first data rate value, allocating a second portion of the wireless bandwidth in the mesh network to convey data at a rate as specified by the first data rate value from the first access point in the mesh network to the first client; and

in accordance with the second data rate value, allocating a third portion of the wireless bandwidth in the mesh network to convey data at a rate as specified by the second data rate value from the first access point in the mesh network to the second access point.

14. A method comprising:

receiving a first data rate value, the first data rate value assigned to a first client wirelessly coupled to a first access point in a mesh network of multiple wirelessly interconnected access points;

receiving a second data rate value, the second data rate value assigned to a second client wirelessly coupled to a second access point in the mesh network of multiple wirelessly interconnected access points, the first access point operable to wirelessly communicate with both the first client and the second access point; and

allocating use of wireless bandwidth amongst the wirelessly interconnected access points in the mesh network in accordance with the first data rate value and the second data rate value;

at a root access point in the mesh network, receiving connectivity status information from the multiple interconnected access points in the mesh network; and

allocating different portions of available wireless bandwidth in the mesh network to communicate between the root access point and the multiple interconnected access points based on the first data rate value and the second data rate value, the method further comprising:

processing the received connectivity status information to identify a number of clients wirelessly coupled to each of the multiple access points in the mesh network; and

allocating portions of wireless bandwidth in the mesh network based on a combination of:

a magnitude of the number of clients wirelessly coupled to each of the multiple access points, and

the first data rate value and the second data rate value.

15. A method comprising:

receiving a first data rate value, the first data rate value assigned to a first client wirelessly coupled to a first access point in a mesh network of multiple wirelessly interconnected access points;

receiving a second data rate value, the second data rate value assigned to a second client wirelessly coupled to a second access point in the mesh network of multiple wirelessly interconnected access points; and

allocating use of wireless bandwidth amongst the wirelessly interconnected access points in the mesh network in accordance with the first data rate value and the second data rate value;

the method further comprising:

receiving notification of a fault condition in the mesh network, the fault condition indicating a failed wireless communication link; and

in response to the fault condition, adjusting a magnitude of portions of the bandwidth assigned to the multiple interconnected access points to circumvent a physical location where the fault condition occurs in the mesh network.

16. A computer system comprising:

computer processor hardware; and

a hardware storage resource coupled to the computer processor hardware, the hardware storage resource storing instructions that, when executed by the computer processor hardware, cause the computer processor hardware to perform operations of:

receiving a first data rate value, the first data rate value assigned to a first client wirelessly coupled to a first access point in a mesh network of multiple wirelessly interconnected access points;

receiving a second data rate value, the second data rate value assigned to a second client wirelessly coupled to a second access point in the mesh network of multiple wirelessly interconnected access points, the mesh network including a source access point that communicates data over a first wireless communication link to the first access point, the first access point communicating the data over a second wireless communication link to the second access point; and

allocating use of wireless bandwidth amongst the wirelessly interconnected access points in the mesh network in accordance with the first data rate value and the second data rate value;

wherein the computer processor hardware is further operable to:

receive notification of a failing access point in the mesh network; and

in response to the notification, adjust a magnitude of portions of the wireless bandwidth assigned to the multiple wirelessly interconnected access points to circumvent the failing access point.

17. The computer system as in claim 16 , wherein allocating use of the wireless bandwidth includes:

producing a summation of the first data rate value and the second data rate value; and

utilizing the summation as a basis to allocate a sufficient portion of available wireless bandwidth in the mesh network to support transmission of data as specified by the first data rate value to the first client and to support transmission of data as specified by the second data rate value to the second client.

18. The computer system as in claim 17 , wherein the computer processor hardware further performs operations of:

utilizing a map of the mesh network to identify that the first access point lies in a communication path including the first access point and the second access point; and

producing the summation in response to detecting that communications to the second client pass through the communication path including the first access point and the second access point.

19. The computer system as in claim 18 , wherein allocating use of the wireless bandwidth includes:

producing a summation of the first data rate value and the second data rate value; and

utilizing the summation as a basis to allocate a sufficient portion of available wireless bandwidth in the mesh network to support transmission of an amount of data as specified by the summation between the source access point in the mesh network and the first access point, the source access point being a gateway resource facilitating distribution of communications to the first client and the second client through the mesh network.

20. The method as in claim 16 , wherein allocating use of the wireless bandwidth includes:

producing a summation of the first data rate value and the second data rate value; and

utilizing the summation as a basis to allocate a sufficient portion of available wireless bandwidth in the mesh network to support transmission of an amount of data as specified by the summation between a source access point in the mesh network and the first access point, the source access point being a gateway resource facilitating distribution of communications to the first client and the second client through the mesh network.

21. A method comprising:

receiving a first data rate value, the first data rate value assigned to a first client wirelessly coupled to a first access point in a mesh network of multiple wirelessly interconnected access points;

receiving a second data rate value, the second data rate value assigned to a second client wirelessly coupled to a second access point in the mesh network of multiple wirelessly interconnected access points, the first access point operable to wirelessly communicate with both the first client and the second access point; and

allocating use of wireless bandwidth amongst the wirelessly interconnected access points in the mesh network in accordance with the first data rate value and the second data rate value;

wherein the first access point wirelessly receives the data from a given access point in the mesh network, the data received by the first wireless access point including a first portion of data and a second portion of data;

in accordance with allocation of the wireless bandwidth in the mesh network:

distributing the first portion of data from the first access point over a first wireless communication link to the first client; and

distributing the second portion of data from the first access point over a second wireless communication link to the second access point, the second access point wirelessly distributing the second portion of data to the second client;

wherein allocating use of the wireless bandwidth further comprises:

allocating first wireless bandwidth over the first wireless communication link between the given access point and the first access point to convey the first portion of data to the first access point at a rate as specified by the first data rate value; and

allocating second wireless bandwidth between the given access point and the first access point over the first wireless communication link to convey the second portion of data to the first access point at a rate as specified by the second data rate value.

22. A method comprising:

receiving a first data rate value, the first data rate value assigned to a first client wirelessly coupled to a first access point in a mesh network of multiple wirelessly interconnected access points;

receiving a second data rate value, the second data rate value assigned to a second client wirelessly coupled to a second access point in the mesh network of multiple wirelessly interconnected access points, the first access point operable to wirelessly communicate with both the first client and the second access point; and

allocating use of wireless bandwidth amongst the wirelessly interconnected access points in the mesh network in accordance with the first data rate value and the second data rate value;

summing the first data rate value and the second data rate value to produce a combined data rate value;

wherein allocating use of the wireless bandwidth further comprises:

allocating first wireless bandwidth between a source access point and the first access point in the mesh network to convey first wireless communications at a rate as specified by the combined data rate value from the source access point to the first access point; and

allocating second wireless bandwidth between the first access point and the second access point to convey second wireless communications at a rate as specified by the second data rate value from the first access point to the second access point, the second wireless communications including a portion of data conveyed in the first wireless communications from the source access point and the first access point.

Assignments (5)
SECURITY INTEREST Recorded Jul 25, 2018
From: BRIGHT HOUSE NETWORKS, LLC; CHARTER COMMUNICATIONS OPERATING, LLC; TIME WARNER CABLE ENTERPRISES LLC; TIME WARNER CABLE INTERNET LLC
To: WELLS FARGO TRUST COMPANY, N.A.
Reel/Frame 046630/0193 →
SECURITY INTEREST Recorded Jul 17, 2018
From: ADCAST NORTH CAROLINA CABLE ADVERTISING, LLC; ALABANZA LLC; AMERICA'S JOB EXCHANGE LLC; COAXIAL COMMUNICATIONS OF CENTRAL OHIO LLC; DUKENET COMMUNICATIONS HOLDINGS, LLC; DUKENET COMMUNICATIONS, LLC; ICI HOLDINGS, LLC; INSIGHT BLOCKER LLC; INSIGHT CAPITAL LLC; INSIGHT COMMUNICATIONS COMPANY LLC; INSIGHT COMMUNICATIONS COMPANY, L.P; INSIGHT COMMUNICATIONS MIDWEST, LLC; INSIGHT COMMUNICATIONS OF CENTRAL OHIO, LLC; INSIGHT COMMUNICATIONS OF KENTUCKY, L.P.; INSIGHT INTERACTIVE, LLC; INSIGHT KENTUCKY CAPITAL, LLC; INSIGHT KENTUCKY PARTNERS I, L.P.; INSIGHT KENTUCKY PARTNERS II, L.P.; INSIGHT MIDWEST HOLDINGS, LLC; INSIGHT MIDWEST, L.P.; INSIGHT PHONE OF INDIANA, LLC; INSIGHT PHONE OF KENTUCKY, LLC; INSIGHT PHONE OF OHIO, LLC; INTERACTIVE CABLE SERVICES, LLC; INTREPID ACQUISITION LLC; NAVISITE LLC; NEW WISCONSIN PROCUREMENT LLC; OCEANIC TIME WARNER CABLE LLC; PARITY ASSETS, LLC; TIME WARNER CABLE BUSINESS LLC; TIME WARNER CABLE ENTERPRISES LLC; TIME WARNER CABLE INFORMATION SERVICES (ALABAMA), LLC; TIME WARNER CABLE INFORMATION SERVICES (ARIZONA), LLC; TIME WARNER CABLE INFORMATION SERVICES (CALIFORNIA), LLC; TIME WARNER CABLE INFORMATION SERVICES (COLORADO), LLC; TIME WARNER CABLE INFORMATION SERVICES (HAWAII), LLC; TIME WARNER CABLE INFORMATION SERVICES (IDAHO), LLC; TIME WARNER CABLE INFORMATION SERVICES (ILLINOIS), LLC; TIME WARNER CABLE INFORMATION SERVICES (INDIANA), LLC; TIME WARNER CABLE INFORMATION SERVICES (KANSAS), LLC; TIME WARNER CABLE INFORMATION SERVICES (KENTUCKY), LLC; TIME WARNER CABLE INFORMATION SERVICES (MAINE), LLC; TIME WARNER CABLE INFORMATION SERVICES (MASSACHUSETTS), LLC; TIME WARNER CABLE INFORMATION SERVICES (MICHIGAN), LLC; TIME WARNER CABLE INFORMATION SERVICES (MISSOURI), LLC; TIME WARNER CABLE INFORMATION SERVICES (NEBRASKA), LLC; TIME WARNER CABLE INFORMATION SERVICES (NEW HAMPSHIRE), LLC; TIME WARNER CABLE INFORMATION SERVICES (NEW JERSEY), LLC; TIME WARNER CABLE INFORMATION SERVICES (NEW MEXICO) LLC; TIME WARNER CABLE INFORMATION SERVICES (NEW YORK), LLC; TIME WARNER CABLE INFORMATION SERVICES (NORTH CAROLINA), LLC; TIME WARNER CABLE INFORMATION SERVICES (OHIO), LLC; TIME WARNER CABLE INFORMATION SERVICES (PENNSYLVANIA), LLC; TIME WARNER CABLE INFORMATION SERVICES (SOUTH CAROLINA), LLC; TIME WARNER CABLE INFORMATION SERVICES (TENNESSEE), LLC; TIME WARNER CABLE INFORMATION SERVICES (TEXAS), LLC; TIME WARNER CABLE INFORMATION SERVICES (VIRGINIA), LLC; TIME WARNER CABLE INFORMATION SERVICES (WASHINGTON), LLC; TIME WARNER CABLE INFORMATION SERVICES (WEST VIRGINIA), LLC; TIME WARNER CABLE INFORMATION SERVICES (WISCONSIN), LLC; TIME WARNER CABLE INTERNATIONAL LLC; TIME WARNER CABLE INTERNET HOLDINGS III LLC; TIME WARNER CABLE INTERNET HOLDINGS LLC; TIME WARNER CABLE INTERNET LLC; TIME WARNER CABLE MEDIA LLC; TIME WARNER CABLE MIDWEST LLC; TIME WARNER CABLE NEW YORK CITY LLC; TIME WARNER CABLE NORTHEAST LLC; TIME WARNER CABLE PACIFIC WEST LLC; TIME WARNER CABLE SERVICES LLC; TIME WARNER CABLE SOUTHEAST LLC; TIME WARNER CABLE SPORTS LLC; TIME WARNER CABLE TEXAS LLC; TWC ADMINISTRATION LLC; TWC COMMUNICATIONS, LLC; TWC DIGITAL PHONE LLC; TWC MEDIA BLOCKER LLC; TWC NEWCO LLC; TWC NEWS AND LOCAL PROGRAMMING HOLDCO LLC; TWC NEWS AND LOCAL PROGRAMMING LLC; TWC REGIONAL SPORTS NETWORK I LLC; TWC SECURITY LLC; TWC SEE HOLDCO LLC; TWC WIRELESS LLC; TWC/CHARTER DALLAS CABLE ADVERTISING, LLC; TWCIS HOLDCO LLC; WISCONSIN PROCUREMENT HOLDCO LLC; BRIGHT HOUSE NETWORKS, LLC; BRIGHT HOUSE NETWORKS INFORMATION SERVICES (ALABAMA), LLC; BRIGHT HOUSE NETWORKS INFORMATION SERVICES (CALIFORNIA), LLC; BRIGHT HOUSE NETWORKS INFORMATION SERVICES (FLORIDA), LLC; BRIGHT HOUSE NETWORKS INFORMATION SERVICES (INDIANA), LLC; BRIGHT HOUSE NETWORKS INFORMATION SERVICES (MICHIGAN), LLC; BHN SPECTRUM INVESTMENTS, LLC; BHN HOME SECURITY SERVICES, LLC; AMERICAN CABLE ENTERTAINMENT COMPANY, LLC; ATHENS CABLEVISION, LLC; AUSABLE CABLE TV, LLC; BRESNAN BROADBAND HOLDINGS, LLC; BRESNAN BROADBAND OF COLORADO, LLC; BRESNAN BROADBAND OF MONTANA, LLC; BRESNAN BROADBAND OF UTAH, LLC; BRESNAN BROADBAND OF WYOMING, LLC; BRESNAN COMMUNICATIONS, LLC; BRESNAN DIGITAL SERVICES, LLC; BRESNAN MICROWAVE OF MONTANA, LLC; CABLE EQUITIES COLORADO, LLC; CABLE EQUITIES OF COLORADO MANAGEMENT LLC CC 10, LLC; CC FIBERLINK, LLC; CC MICHIGAN, LLC; CC SYSTEMS, LLC; CC V HOLDINGS, LLC; CC VI FIBERLINK, LLC; CC VI OPERATING COMPANY, LLC; CC VII FIBERLINK, LLC; CC VIII FIBERLINK, LLC; CC VIII HOLDINGS, LLC; CC VIII OPERATING, LLC; CC VIII, LLC; CCO FIBERLINK, LLC; CCO HOLDCO TRANSFERS VII, LLC; CCO LP, LLC; CCO NR HOLDINGS, LLC; CCO PURCHASING, LLC; CCO SOCAL I, LLC; CCO SOCAL II, LLC; CCO SOCAL VEHICLES, LLC; CCO TRANSFERS, LLC; CHARTER ADVANCED SERVICES (AL), LLC; CHARTER ADVANCED SERVICES (CA), LLC; CHARTER ADVANCED SERVICES (CO), LLC; CHARTER ADVANCED SERVICES (CT), LLC; CHARTER ADVANCED SERVICES (GA), LLC; CHARTER ADVANCED SERVICES (IL), LLC; CHARTER ADVANCED SERVICES (IN), LLC; CHARTER ADVANCED SERVICES (KY), LLC; CHARTER ADVANCED SERVICES (LA), LLC; CHARTER ADVANCED SERVICES (MA), LLC; CHARTER ADVANCED SERVICES (MD), LLC; CHARTER ADVANCED SERVICES (MI), LLC; CHARTER ADVANCED SERVICES (MN), LLC; CHARTER ADVANCED SERVICES (MO), LLC; CHARTER ADVANCED SERVICES (MS), LLC; CHARTER ADVANCED SERVICES (MT), LLC; CHARTER ADVANCED SERVICES (NC), LLC; CHARTER ADVANCED SERVICES (NE), LLC; CHARTER ADVANCED SERVICES (NH), LLC; CHARTER ADVANCED SERVICES (NV), LLC; CHARTER ADVANCED SERVICES (NY), LLC; CHARTER ADVANCED SERVICES (OH), LLC; CHARTER ADVANCED SERVICES (OR), LLC; CHARTER ADVANCED SERVICES (PA), LLC; CHARTER ADVANCED SERVICES (SC), LLC; CHARTER ADVANCED SERVICES (TN), LLC; CHARTER ADVANCED SERVICES (TX), LLC; CHARTER ADVANCED SERVICES (UT), LLC; CHARTER ADVANCED SERVICES (VA), LLC; CHARTER ADVANCED SERVICES (VT), LLC; CHARTER ADVANCED SERVICES (WA), LLC; CHARTER ADVANCED SERVICES (WI), LLC; CHARTER ADVANCED SERVICES (WV), LLC; CHARTER ADVANCED SERVICES (WY), LLC; CHARTER ADVANCED SERVICES VIII (MI), LLC; CHARTER ADVANCED SERVICES VIII (MN), LLC; CHARTER ADVANCED SERVICES VIII (WI), LLC; CHARTER ADVERTISING OF SAINT LOUIS, LLC; CHARTER CABLE OPERATING COMPANY, LLC; CHARTER CABLE PARTNERS, LLC; CHARTER COMMUNICATIONS ENTERTAINMENT I, LLC; CHARTER COMMUNICATIONS ENTERTAINMENT II, LLC; CHARTER COMMUNICATIONS ENTERTAINMENT, LLC; CHARTER COMMUNICATIONS OF CALIFORNIA, LLC; CHARTER COMMUNICATIONS OPERATING CAPITAL CORP.; CHARTER COMMUNICATIONS OPERATING, LLC; CHARTER COMMUNICATIONS PROPERTIES LLC; CHARTER COMMUNICATIONS V, LLC; CHARTER COMMUNICATIONS VENTURES, LLC; CHARTER COMMUNICATIONS VI, L.L.C.; CHARTER COMMUNICATIONS VII, LLC; CHARTER COMMUNICATIONS, LLC; CHARTER DISTRIBUTION, LLC; CHARTER FIBERLINK - ALABAMA, LLC; CHARTER FIBERLINK - GEORGIA, LLC; CHARTER FIBERLINK - ILLINOIS, LLC; CHARTER FIBERLINK - MARYLAND II, LLC; CHARTER FIBERLINK - MICHIGAN, LLC; CHARTER FIBERLINK - MISSOURI, LLC; CHARTER FIBERLINK - NEBRASKA, LLC; CHARTER FIBERLINK - PENNSYLVANIA, LLC; CHARTER FIBERLINK - TENNESSEE, LLC; CHARTER FIBERLINK AR-CCVII, LLC; CHARTER FIBERLINK CA-CCO, LLC; CHARTER FIBERLINK CC VIII, LLC; CHARTER FIBERLINK CCO, LLC; CHARTER FIBERLINK CT-CCO, LLC; CHARTER FIBERLINK LA-CCO, LLC; CHARTER FIBERLINK MA-CCO, LLC; CHARTER FIBERLINK MS-CCVI, LLC; CHARTER FIBERLINK NC-CCO, LLC; CHARTER FIBERLINK NH-CCO, LLC; CHARTER FIBERLINK NV-CCVII, LLC; CHARTER FIBERLINK NY-CCO, LLC; CHARTER FIBERLINK OH-CCO, LLC; CHARTER FIBERLINK OR-CCVII, LLC; CHARTER FIBERLINK SC-CCO, LLC; CHARTER FIBERLINK TX-CCO, LLC; CHARTER FIBERLINK VA-CCO, LLC; CHARTER FIBERLINK VT-CCO, LLC; CHARTER FIBERLINK WA-CCVII, LLC; CHARTER HELICON, LLC; CHARTER HOME SECURITY, LLC; CHARTER LEASING HOLDING COMPANY, LLC; CHARTER LEASING OF WISCONSIN, LLC; CHARTER RMG, LLC; CHARTER STORES FCN, LLC; CHARTER VIDEO ELECTRONICS, LLC; FALCON CABLE COMMUNICATIONS, LLC; FALCON CABLE MEDIA, A CALIFORNIA LIMITED PARTNERSHIP; FALCON CABLE SYSTEMS COMPANY II, L.P.; FALCON CABLEVISION, A CALIFORNIA LIMITED PARTNERSHIP; FALCON COMMUNITY CABLE, L.P.; FALCON COMMUNITY VENTURES I LIMITED PARTNERSHIP; FALCON FIRST CABLE OF THE SOUTHEAST, LLC; FALCON FIRST, LLC; FALCON TELECABLE, A CALIFORNIA LIMITED PARTNERSHIP; FALCON VIDEO COMMUNICATIONS, L.P.; HELICON PARTNERS I, L.P.; HOMETOWN T.V., LLC; HPI ACQUISITION CO. LLC; INTERLINK COMMUNICATIONS PARTNERS, LLC; LONG BEACH, LLC; MARCUS CABLE ASSOCIATES, L.L.C.; MARCUS CABLE OF ALABAMA, L.L.C.; MARCUS CABLE, LLC; MIDWEST CABLE COMMUNICATIONS, LLC; PEACHTREE CABLE TV, L.P.; PEACHTREE CABLE TV, LLC; PHONE TRANSFERS (AL), LLC; PHONE TRANSFERS (CA), LLC; PHONE TRANSFERS (GA), LLC; PHONE TRANSFERS (NC), LLC; PHONE TRANSFERS (TN), LLC; PHONE TRANSFERS (VA), LLC; PLATTSBURGH CABLEVISION, LLC; RENAISSANCE MEDIA LLC; RIFKIN ACQUISITION PARTNERS, LLC; ROBIN MEDIA GROUP, LLC; SCOTTSBORO TV CABLE, LLC TENNESSEE, LLC; THE HELICON GROUP, L.P.; VISTA BROADBAND COMMUNICATIONS, LLC; VOIP TRANSFERS (AL), LLC; VOIP TRANSFERS (CA) LLC; VOIP TRANSFERS (GA), LLC; VOIP TRANSFERS (NC), LLC; VOIP TRANSFERS (TN), LLC; VOIP TRANSFERS (VA), LLC
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
Reel/Frame 046567/0090 →
CHANGE OF ADDRESS Recorded Nov 15, 2017
From: TIME WARNER CABLE ENTERPRISES LLC
To: TIME WARNER CABLE ENTERPRISES LLC
Reel/Frame 044456/0167 →
SECURITY INTEREST Recorded May 18, 2016
From: BRIGHT HOUSE NETWORKS, LLC; CHARTER COMMUNICATIONS OPERATING, LLC; TIME WARNER CABLE ENTERPRISES LLC
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 038747/0507 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2015
From: GUNASEKARA, DON; DUBOIS, HARRIET; CALDWELL, KEVIN; NALLANI, LAXMAN
To: TIME WARNER CABLE ENTERPRISES LLC
Reel/Frame 035840/0559 →
Continuity (2)
Division 13857430 · Apr 5, 2013
Related Publication 20150271826A1 · Sep 24, 2015