US12035420B2 - Breakout gateway control function number modification based on SIP invite header information - Google Patents
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- US12035420B2 US12035420B2 US17/530,367 US202117530367A US12035420B2 US 12035420 B2 US12035420 B2 US 12035420B2 US 202117530367 A US202117530367 A US 202117530367A US 12035420 B2 US12035420 B2 US 12035420B2
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- sip invite
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L65/00—Network arrangements, protocols or services for supporting real-time applications in data packet communication
- H04L65/10—Architectures or entities
- H04L65/1016—IP multimedia subsystem [IMS]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W80/00—Wireless network protocols or protocol adaptations to wireless operation
- H04W80/08—Upper layer protocols
- H04W80/10—Upper layer protocols adapted for application session management, e.g. SIP [Session Initiation Protocol]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L65/00—Network arrangements, protocols or services for supporting real-time applications in data packet communication
- H04L65/1066—Session management
- H04L65/1069—Session establishment or de-establishment
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M7/00—Arrangements for interconnection between switching centres
- H04M7/12—Arrangements for interconnection between switching centres for working between exchanges having different types of switching equipment, e.g. power-driven and step by step or decimal and non-decimal
- H04M7/1205—Arrangements for interconnection between switching centres for working between exchanges having different types of switching equipment, e.g. power-driven and step by step or decimal and non-decimal where the types of switching equipement comprises PSTN/ISDN equipment and switching equipment of networks other than PSTN/ISDN, e.g. Internet Protocol networks
- H04M7/126—Interworking of session control protocols
- H04M7/127—Interworking of session control protocols where the session control protocols comprise SIP and SS7
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
- H04W4/021—Services related to particular areas, e.g. point of interest [POI] services, venue services or geofences
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L2101/00—Indexing scheme associated with group H04L61/00
- H04L2101/30—Types of network names
- H04L2101/385—Uniform resource identifier for session initiation protocol [SIP URI]
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- H04—ELECTRIC COMMUNICATION TECHNIQUE
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- H04L65/00—Network arrangements, protocols or services for supporting real-time applications in data packet communication
- H04L65/10—Architectures or entities
- H04L65/102—Gateways
- H04L65/1033—Signalling gateways
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- H04L65/00—Network arrangements, protocols or services for supporting real-time applications in data packet communication
- H04L65/1066—Session management
- H04L65/1101—Session protocols
- H04L65/1104—Session initiation protocol [SIP]
Definitions
- IP Multimedia Subsystem IP Multimedia Core Network Subsystem
- SIP Session Initiation Protocol
- VoIP Voice Call Session Initiation Protocol
- VoIP Voice Call Session Initiation Protocol
- IMS terminals such as mobile phones and other user equipment (UEs) can register directly on IMS to make calls, even when they are roaming in another network or country.
- the calls are routed across a network of switching systems, sometimes owned by different network operators.
- FIG. 1 is a block diagram that illustrates a wireless communications system.
- FIG. 2 illustrates an example architecture of an Internet Protocol (IP) Multimedia Subsystem (IMS) in which aspects of the present invention can operate.
- IP Internet Protocol
- IMS Multimedia Subsystem
- FIG. 4 is a block diagram that illustrates an example toll free number modification.
- FIG. 7 is a block diagram that illustrates an example of a computer system in which at least some operations described herein can be implemented.
- a Breakout Gateway Control Function determines a geographic location information (e.g., a major trading area (MTA)) from a SIP INVITE header information (e.g., from a P-Access-Network-Info (PANI) header information).
- MTA major trading area
- PANI P-Access-Network-Info
- the BGCF modifies the SIP URI in the SIP INVITE request by adding, deleting, or modifying values (e.g., prepending a number prefix) to generate a SIP URI that is based on the geographic location information.
- the BGCF modifies the SIP URIs to provide two different SIP URIs with different prefixes that are based on the user locations.
- the two SIP URIs are routed to different destinations based on the caller's location. This allows different callers to use the same dialing number (e.g., the same 1-800 toll-free number or the same 411 directory-assistance number) to reach different destinations where each destination corresponds to the caller's location (e.g., a caller reaches the destination better suited to handle the caller's inquiries).
- the BGCF sends the modified SIP URIs to an Interconnect Session Border Controller (ISBC) without traversing any intermediate network nodes or functions and/or without any intervening processing of the modified SIP URI that would further modify the SIP INVITE URIs.
- ISBC Interconnect Session Border Controller
- FIG. 1 is a block diagram that illustrates a wireless telecommunication system 100 (“system 100 ”) in which aspects of the disclosed technology are incorporated.
- the system 100 includes base stations 102 - 1 through 102 - 4 (also referred to individually as “base station 102 ” or collectively as “base stations 102 ”).
- a base station is a type of network access node (NAN) that can also be referred to as a cell site, a base transceiver station, or a radio base station.
- the system 100 can include any combination of NANs including an access point, radio transceiver, gNodeB (gNB), NodeB, eNodeB (eNB), Home NodeB or eNodeB, or the like.
- a NAN can be a WLAN access point, such as an Institute of Electrical and Electronics Engineers (IEEE) 802.11 access point.
- IEEE Institute of Electrical and Electronics Engineers
- the core network 106 provides, manages, and controls security services, user authentication, access authorization, tracking, Internet Protocol (IP) connectivity, and other access, routing, or mobility functions.
- the base stations 102 interface with the core network 106 through a first set of backhaul links 108 (e.g., S1 interfaces) and can perform radio configuration and scheduling for communication with the wireless devices 104 or can operate under the control of a base station controller (not shown).
- the base stations 102 can communicate, either directly or indirectly (e.g., through the core network 106 ), with each other over a second set of backhaul links 110 - 1 through 110 - 3 (e.g., X 1 interfaces), which can be wired or wireless communication links.
- a macro cell generally covers a relatively large geographic area (e.g., several kilometers in radius) and can allow access by wireless devices with service subscriptions with a wireless network service provider.
- a small cell is a lower-powered base station, as compared with a macro cell, and can operate in the same or different (e.g., licensed, unlicensed) frequency bands as macro cells. Examples of small cells include pico cells, femto cells, and micro cells. In general, a pico cell can cover a relatively smaller geographic area and can allow unrestricted access by wireless devices with service subscriptions with the network provider.
- the communication networks that accommodate various disclosed examples can be packet-based networks that operate according to a layered protocol stack.
- PDCP Packet Data Convergence Protocol
- a Radio Link Control (RLC) layer then performs packet segmentation and reassembly to communicate over logical channels.
- RLC Radio Link Control
- a Medium Access Control (MAC) layer can perform priority handling and multiplexing of logical channels into transport channels.
- the MAC layer can also use Hybrid ARQ (HARQ) to provide retransmission at the MAC layer, to improve link efficiency.
- HARQ Hybrid ARQ
- the wireless devices 104 are distributed throughout the system 100 , where each wireless device 104 can be stationary or mobile.
- a wireless device can be referred to as a mobile station, a subscriber station, a mobile unit, a subscriber unit, a wireless unit, a remote unit, a handheld mobile device, a remote device, a mobile subscriber station, an access terminal, a mobile terminal, a wireless terminal, a remote terminal, a handset, a mobile client, a client, or the like.
- a Serving-CSCF (S-CSCF) is the central node of the signaling plane.
- the BGCF 420 in FIG. 4 can include a TAC-MTA lookup table 422 that associates different TAC values to different MTA values.
- SIP INVITE #1 PANI header includes a TAC value with hexadecimal digits “2C” which the TAC-MTA table 422 associates with an MTA value of 24 corresponding to Seattle;
- SIP INVITE #2 PANI header includes a TAC value with hexadecimal digits “59” which the TAC-MTA table 422 associates with an MTA value of 1 corresponding to New Jersey.
- FIG. 7 Various common components (e.g., cache memory) are omitted from FIG. 7 for brevity. Instead, the computer system 700 is intended to illustrate a hardware device on which components illustrated or described relative to the examples of the figures and any other components described in this specification can be implemented.
- Various common components e.g., cache memory
- example “embodiment” and “implementation” are used interchangeably.
- reference to “one example” or “an example” in the disclosure can be, but not necessarily are, references to the same implementation; and, such references mean at least one of the implementations.
- the appearances of the phrase “in one example” are not necessarily all referring to the same example, nor are separate or alternative examples mutually exclusive of other examples.
- a feature, structure, or characteristic described in connection with an example can be included in another example of the disclosure.
- various features are described which can be exhibited by some examples and not by others.
- various requirements are described which can be requirements for some examples but no other examples.
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- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Multimedia (AREA)
- Business, Economics & Management (AREA)
- General Business, Economics & Management (AREA)
- Mobile Radio Communication Systems (AREA)
Abstract
Description
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SIP INVITE # 1 PANI=3GPP-E-UTRAN-FDD;utran-cell-id-3gpp=3102602C0909c4701 -
SIP INVITE # 2 PANI=3GPP-E-UTRAN-FDD;utran-cell-id-3gpp=31026059078b5623
-
Claims (18)
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US17/530,367 US12035420B2 (en) | 2021-11-18 | 2021-11-18 | Breakout gateway control function number modification based on SIP invite header information |
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US17/530,367 US12035420B2 (en) | 2021-11-18 | 2021-11-18 | Breakout gateway control function number modification based on SIP invite header information |
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US20230156865A1 US20230156865A1 (en) | 2023-05-18 |
US12035420B2 true US12035420B2 (en) | 2024-07-09 |
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