IP Library Granted Patent US 7,688,836
Granted Patent B1
US 7,688,836 · App. 11/551,520 · Granted Mar 30, 2010

Method and system for establishing a cross-carrier, multilayer communications path

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Quick Facts
Patent No.
US 7,688,836
App. No.
11/551,520
Granted
Mar 30, 2010
Kind
B1
Abstract

A method and system is provided for establishing a secure intercarrier, interlayer communications path that can allocate bandwidth on demand. Using the present invention, one network carrier uses the resources of another carrier to communicate with an otherwise unreachable target component. As bandwidth capacity is reached, the intercarrier connection can be dynamically migrated to a lower network layer. Transmissions of the upper layer are mapped into the lower layer to satisfy the additional bandwidth requested by the connection.

Claims (34)

1. One or more computer-readable media having computer-useable instructions embedded thereon for causing a network element to perform a method that comprises:

receiving at the network element a request from a first carrier to communicate data to a second carrier, wherein the first carrier is associated with a first network domain and the second carrier is associated with a second network domain; and

fulfilling the request via the second carrier in a first layer, thereby establishing an intercarrier, interlayer communications path between the first carrier and the second carrier, wherein bandwidth is automatically allocated from a second layer to the communications path by way of the network element.

2. The computer-readable media of claim 1 , wherein the fulfilling the request includes:

providing a carrier-to-carrier bridging control; and

providing for the transmission of the data via the second carrier across the second network domain, whereby the data is communicated from the first carrier through the second carrier by passing through the carrier-to-carrier bridging control.

3. One or more computer-readable media having computer-useable instructions embedded thereon for causing a network element to perform a method that comprises:

receiving at the network element a request from a first carrier to communicate data to a second carrier, wherein the first carrier is associated with a first network domain and the second carrier is associated with a second network domain; and

fulfilling the request via the second carrier in a first layer, thereby establishing an intercarrier, interlayer communications path between the first carrier and the second carrier, wherein bandwidth is automatically allocated from a second layer to the communications path by way of the network element;

wherein fulfilling the request includes

(1) providing a carrier-to-carrier bridging control, and

(2) providing for the transmission of the data via the second carrier across the second network domain, whereby the data is communicated from the first carrier through the second carrier by passing through the carrier-to-carrier bridging control, and

wherein an automatic allocation of bandwidth from the second layer to the communications path includes aggregating a plurality of first-layer signals into one or more second-layer signals.

4. The computer-readable media of claim 3 , wherein aggregating the plurality of first-layer signals includes at least one of:

mapping one or more packet-layer transmissions into a framing-layer transmission; and

mapping one or more framing-layer transmission into a transport-layer transmission.

5. The computer-readable media of claim 4 , wherein the framing-layer technologies includes at least one of Synchronous Optical NETwork (SONET), Synchronous Digital Hierarchy (SDH), Digital Wrapper, Optical Transport Network (OTN), and Gigabit Ethernet (GigE).

6. The computer-readable media of claim 5 , wherein the packet-layer technologies include at least one of Asynchronous Transfer Mode (ATM), Internet Protocol (IP), Frame Relay (FR), and MultiProtocol Label Switching (MPLS) technologies.

7. The computer-readable media of claim 6 , wherein aggregating the plurality of signals includes mapping one or more framing-layer technologies into a transport layer technology.

8. The computer-readable media of claim 7 , wherein the transport-layer technologies include lambdas.

9. One or more computer-readable media having computer-useable instructions embodied thereon for causing a network element to perform a method that comprises:

fulfilling a request received at the network element from a first carrier having a first network domain to communicate data via a second carrier having a second carrier network domain in a first layer, thereby establishing an intercarrier, interlayer communications path between the first carrier and the second carrier; and

automatically allocating bandwidth from a second layer to the communications path by way of the network element.

10. The computer-readable media of claim 9 , wherein fulfilling the request includes:

providing a carrier-to-carrier bridging control; and

communicating the data via the second carrier across the second carrier network domain, such that the data is communicated from the first carrier though the second carrier by passing though the carrier-to-carrier bridging control.

11. A system for communicating data through a network domain of a communications carrier by utilizing a carrier-to-carrier bridging control to establish a data connection through the network domain, the system comprising:

a first request-fulfillment component that facilitates intralayer communication;

a second request-fulfillment component that facilitates intracarrier communication; and

a bandwidth-allocation component logically coupled to the first and second request-fulfillment components that automatically allocates cross-carrier bandwidth from a first layer to a second layer of a network domain.

12. The system of claim 11 , wherein the first request-fulfillment component is a traffic-engineering, request-fulfillment component.

13. The system of claim 12 , wherein the second request-fulfillment component is a network-engineering, request-fulfillment component.

14. The system of claim 13 , wherein the bandwidth-allocation component comprises a network-engineering component or a traffic-engineering component.

15. The system of claim 14 , wherein the bandwidth-allocation component is adapted to aggregate a plurality of first-layer signals into one or more second-layer signals.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Aug 23, 2022
From: DEUTSCHE BANK TRUST COMPANY AMERICAS
To: IBSV LLC; LAYER3 TV, LLC; PUSHSPRING, LLC; T-MOBILE CENTRAL LLC; T-MOBILE USA, INC.; ASSURANCE WIRELESS USA, L.P.; BOOST WORLDWIDE, LLC; CLEARWIRE COMMUNICATIONS LLC; CLEARWIRE IP HOLDINGS LLC; SPRINTCOM LLC; SPRINT COMMUNICATIONS COMPANY L.P.; SPRINT INTERNATIONAL INCORPORATED; SPRINT SPECTRUM LLC
Reel/Frame 062595/0001 →
TERMINATION AND RELEASE OF FIRST PRIORITY AND JUNIOR PRIORITY SECURITY INTEREST IN PATENT RIGHTS Recorded Apr 2, 2020
From: DEUTSCHE BANK TRUST COMPANY AMERICAS
To: SPRINT COMMUNICATIONS COMPANY L.P.
Reel/Frame 052969/0475 →
SECURITY AGREEMENT Recorded Apr 2, 2020
From: T-MOBILE USA, INC.; ISBV LLC; T-MOBILE CENTRAL LLC; LAYER3 TV, INC.; PUSHSPRING, INC.; BOOST WORLDWIDE, LLC; CLEARWIRE COMMUNICATIONS LLC; CLEARWIRE IP HOLDINGS LLC; CLEARWIRE LEGACY LLC; SPRINT COMMUNICATIONS COMPANY L.P.; SPRINT INTERNATIONAL INCORPORATED; SPRINT SPECTRUM L.P.; ASSURANCE WIRELESS USA, L.P.
To: DEUTSCHE BANK TRUST COMPANY AMERICAS
Reel/Frame 053182/0001 →
GRANT OF FIRST PRIORITY AND JUNIOR PRIORITY SECURITY INTEREST IN PATENT RIGHTS Recorded Mar 6, 2017
From: SPRINT COMMUNICATIONS COMPANY L.P.
To: DEUTSCHE BANK TRUST COMPANY AMERICAS
Reel/Frame 041895/0210 →