USRE42920E1 - System and method for inter-domain mobility management - Google Patents
System and method for inter-domain mobility management Download PDFInfo
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- USRE42920E1 USRE42920E1 US11/657,636 US65763607A USRE42920E US RE42920 E1 USRE42920 E1 US RE42920E1 US 65763607 A US65763607 A US 65763607A US RE42920 E USRE42920 E US RE42920E
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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
- H04L65/102—Gateways
- H04L65/1043—Gateway controllers, e.g. media gateway control protocol [MGCP] controllers
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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
- H04L65/1101—Session protocols
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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
- H04L65/1101—Session protocols
- H04L65/1106—Call signalling protocols; H.323 and related
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L9/00—Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
- H04L9/40—Network security protocols
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M3/00—Automatic or semi-automatic exchanges
- H04M3/42—Systems providing special services or facilities to subscribers
- H04M3/42229—Personal communication services, i.e. services related to one subscriber independent of his terminal and/or location
- H04M3/42263—Personal communication services, i.e. services related to one subscriber independent of his terminal and/or location where the same subscriber uses different terminals, i.e. nomadism
- H04M3/42272—Personal communication services, i.e. services related to one subscriber independent of his terminal and/or location where the same subscriber uses different terminals, i.e. nomadism whereby the subscriber registers to the terminals for personalised service provision
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- H—ELECTRICITY
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- H04M7/00—Arrangements for interconnection between switching centres
- H04M7/006—Networks other than PSTN/ISDN providing telephone service, e.g. Voice over Internet Protocol (VoIP), including next generation networks with a packet-switched transport layer
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
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- H04W80/08—Upper layer protocols
- H04W80/10—Upper layer protocols adapted for application session management, e.g. SIP [Session Initiation Protocol]
Definitions
- the present invention relates to a method and apparatus for inter-domain mobility management for a telephony network.
- the present invention also relates generally to the H.323 standard for transmitting audio and video data streams, and more particularly to extending the H.323 standard to support mobility in a multimedia communication system with services over packet-based networks.
- ITU-T Recommendation H.323 describes terminals and other entities that provide multimedia communications services over packet based networks (PBN) which may not provide a guaranteed Quality of Service.
- PBN packet based networks
- H.323 entities may provide real-time audio, video and/or data communications. Support for audio is mandatory, while data and video are optional, but if supported, the ability to use a specified common mode of operation is required, so that all terminals supporting that media type can interwork.
- inter-domain mobility management of this invention needs to be independent of the underlying architectural configurations and is not “hard-wired” for any particular configuration of any architectural or functional entity as done in the prior art.
- H.225.0 RAS Intra-domain communication
- inter-domain mobility management we need to extend H.225.0 Annex G, as disclosed in ITU-T Recommendation H.225.0 Annex G (1999), “Communications Between Administrative Domains.”
- the new messages such as, disclosed in R. R. Roy, AT&T, “H.323 Mobility Architecture and Protocol for Terminal, User, and Service Mobility,” D-354, ITU-T SG 16 Q.13/16, WP2, Geneva, Switzerland, Feb. 7-18, 2000, the disclosure of which is entirely incorporated herein by reference, required for mobility binding and updating will also be applicable for inter-domain communication with additional parameters like hopcounts and others in the header as required per H.225.0 Annex G.
- H.225.0 RAS messages like LRQ Location Request
- LRQ Location Request
- H.323 Mobility Management Services, Scenarios, and Information Flows in an Administrative Domain MD012, Ad Hoc Mobility Conference Call, February-May 2000
- MD012 Ad Hoc Mobility Conference Call
- H.225.0 Annex G the messages like accessRequest and others of H.225.0 Annex G are also need to be extended for inter-domain mobility management as described in this embodiment.
- the mobility related parameters that specify the information related to the mobile entity used in the LRQ and call signaling messages of H.225.0 RAS/Q.931 also need to be passed to the accessRequest and other messages of H.225.0 Annex G while the mobile entity is visiting a foreign domain.
- H.323 As an adaptation of H.320, which addresses videoconferencing over ISDN and other circuit-switched networks and services.
- ITU-T Recommendation H.320 describes terminals and other entities that provide multimedia communications services over circuit-switched networks which provide a guaranteed Quality of Service.
- H.320 entities may provide real-time audio, video and/or data communications.
- H.320 was ratified in 1990, and corporations expanded their networks to include Local Area Networks (LANs) and LAN gateways to the Wide Area Network (WAN). Then, H.323 was expanded beyond being an extension of H.320 so that H.323 now covers the corporate intranets and packet-switched networks in general.
- LANs Local Area Networks
- WAN Wide Area Network
- the ITU published a set of standards for multimedia communication over packet-based networks (PBNs) under the H.323 designation, which includes standards for data channels, monitoring channels, and control channels. It includes provision of real-time audio, video and/or data communications.
- the H.323 components defined by the standard include: terminals, gateways, gatekeepers and multipoint control units (MCUs).
- the terminals provide real-time communications, must support audio/voice communications and optionally s support data and video.
- the most common H.323 terminals are the applications that run on a personal computer (PC).
- H.323 gateways provide services to H.323 clients and allow communication with non-H.323 entities, such as communication between H.323 terminals and telephone in a circuit-switched network.
- Gatekeepers provide call control services for H.323 endpoints, e.g., address translation and bandwidth management. Gatekeepers are optional in the H.323 standard, but, if they are present, the endpoints must use the services of the gatekeepers. The H.323 standard specifies certain mandatory services that gatekeepers, if utilized, must provide.
- the multipoint control units provide support for conferences of three or more endpoints by managing conference resources, manage negotiations between the endpoints to specify which audio or video code(s) to use and may manage the media stream.
- the H.323 standard defines how audio and video conferencing systems communicate over packet-switched networks defines call control and management practices for point-to-point and broadcast/multicast/unicast multipoint conferences, addresses QoS issues with a centralized gatekeeper that LAN administrators use to manage media traffic, bandwidth and user participation, and describes functionality that allows calls to connect from the LAN to the Public Switched Telephone Network (PST) as well as to other H.32 ⁇ standards-based terminals.
- PST Public Switched Telephone Network
- video and audio data streams are compressed and packetized in accordance with a real-time transport protocol (RTP/RTCP) standard from the Internet Engineering Task Force (IETF) and are used to support video conferencing and other communications over the Internet.
- RTP/RTCP real-time transport protocol
- Packets include data and header information which facilitates detection of packet loss, detection of packet status and synchronization of the packets.
- the video data streams may use H.261, H.262, or H.263 protocols.
- Audio data streams may use G.711, G.722, G.723.1 G.728 or G.729 protocols.
- the H.323 standard supports teleconferencing in networks that utilize TCP/IP, such as, for example, the Internet.
- the H.323 system supports interoperability and assumes that users, terminals, and services are fixed. If an H.323 terminal is moved form one network to another, its point of attachment or network address changes. In this situation, the address of the mobile terminal needs to be resolved to set up a new call or continue a same call. Thus, there is a need for an H.323 mobility architecture that provides for terminal, user and service mobility for inter-domain mobility management.
- the present invention provides an H.323-based mobility protocol for real-time inter-domain mobility management for a telephony network between the administrative domains.
- the invention is an inter-domain mobility management method, comprising:
- said first gatekeeper being unable to verify said information on related to said mobile H.323 entity and sending information to accessing a first border element within said first administrative domain to resolve said information related to the mobile entity;
- said first border element communicating information with accessing a second border element in a second administrative domain to resolve said information related to the mobile entity
- said second border element communicates sending back with to said first border element with information to resolve information that resolves said information related to the mobile entity
- said second first border element accepting said resolved information related to the mobile entity and communicates said information with sending to said mobile H.323 entity via said first gatekeeper a reply to the information related to the mobile entity sent by said mobile H.323 entity.
- the invention is an inter-domain mobility management method, comprising:
- said first gatekeeper being unable to verify said information on related to said mobile H.323 entity and sending information to accessing a first border element within said first administrative domain to resolve said information related to the mobile entity;
- said first border element communicating information with accessing a second border element in a second administrative domain to resolve said information related to the mobile entity
- said second border element obtains information obtaining from a second backend services in said second administrative domain information that resolves said information related to the mobile entity and communicates sending back with to said first border element with information to resolve said information related to the mobile entity the information obtained from said second border element;
- said second first border element accepting said resolved information related to the mobile entity and communicates said information with sending to said mobile H.323 entity via said first gatekeeper a reply to the information related to the mobile entity sent by said mobile H.323 entity.
- the invention is an inter-domain mobility management method, comprising:
- said first gatekeeper being unable to verify said information on related to said mobile H.323 entity and sending information to accessing a first border element within said first administrative domain to resolve said information related to the mobile entity;
- said first border element communicating information with accessing a first backend services to resolve said information related to the mobile entity, wherein said first backend services is shared with both by said first administrative domain and a second administrative domain;
- said second first border element obtains information obtaining from said first backend services in said first and said second administrative domain information that resolves said information related to the mobile entity, and communicates sending it back to said first border element with information to resolve said information related to the mobile entity;
- said second first border element accepting said resolved information related to the mobile entity and communicates said information with sending to said mobile H.323 entity via said first gatekeeper a reply to the information related to the mobile entity sent by said mobile H.323 entity.
- the invention is an inter-domain mobility management method, comprising:
- said first gatekeeper being unable to verify said information on related to said mobile H.323 entity and sending information to accessing a first border element within said first administrative domain to resolve said information related to the mobile entity;
- said first border element communicating information with accessing a second border element in a second administrative domain to resolve said information related to the mobile entity
- said second border element obtains obtaining information from a second backend services in said second administrative domain via at least one a second gatekeeper in said second administrative domain and communicates back with sending back to said first border element with information to resolve said information related to the mobile entity the information obtained from the second backend service;
- said second first border element accepting said resolved information related to the mobile entity and communicates said information with sending to said mobile H.323 entity via said first gatekeeper a reply to the information related to the mobile entity sent by said mobile H.323 entity.
- the invention is an inter-domain mobility management method, comprising:
- said first gatekeeper being unable to verify said information on related to said mobile H.323 entity and sending information to accessing a first border element within said first administrative domain to resolve said information related to the mobile entity;
- said first border element communicating information with accessing a second border element in a second administrative domain to resolve said information related to the mobile entity
- said second border element obtains obtaining information from a second home location function in said second administrative domain and communicates sending back with to said first border element with information to resolve said information related to the mobile entity the information obtained from the second location function;
- said second first border element accepting said resolved information related to the mobile entity and communicates said information with sending to said mobile H.323 entity via said first gatekeeper a reply to the information related to the mobile entity sent by said mobile H.323 entity.
- the invention is an inter-domain mobility management method, comprising:
- said first gatekeeper being unable to verify said information on related to said mobile H.323 entity and sending information to accessing a first border element within said first administrative domain to resolve said information related to the mobile entity;
- said first border element communicating information with accessing a second border element in a second administrative domain to resolve said information related to the mobile entity
- said second border element obtains obtaining information from a second home location function in said second administrative domain via at least one a second gatekeeper in said second administrative domain and communicates sending back with to said first border element with information to resolve said information related to the mobile entity the information obtained from said second location function;
- said second first border element accepting said resolved information related to the mobile entity and communicates said information with sending to said mobile H.323 entity via said first gatekeeper a reply to the information related to the mobile entity sent by said mobile H.323 entity.
- this invention is an H.323-based mobility protocol for real-time mobile multimedia communications and conferencing over packet-based networks by a Mobile Terminal/Node/Entity having a Home Gatekeeper/Home Database, comprising the steps of:
- the Mobile Terminal/Node/Entity lacks notification of H.323 mobility services availability, broadcasting/multicasting/unicasting /sending, by the Mobile Terminal/Node/Entity, a message to the Home Gatekeeper/Home Location Database in a second administrative domain, which notifies H.323 Visiting/Foreign Gatekeepers that the Mobile Terminal/Node/Entity needs H.323 mobility services and notifying, by the H.323 Visiting/Foreign Gatekeepers, to the Mobile Terminal/Node/Entity of available H.323 Visiting/Foreign Gatekeepers within the first administrative domain;
- H.323 Visiting/Foreign Gatekeeper with which the Mobile Terminal/Node/Entity is registered, support for the H.323 communication that includes at least one of: audio, video and data.
- this invention is a computer-readable medium having computer-executable steps for implementing, by a Mobile Terminal/Node/Entity, an H.323-based mobility protocol for real-time mobile multimedia communications and conferencing over packet-based networks wherein a plurality of H.323 gatekeepers provide notification of H.323 mobility services availability by periodically broadcasting/multicasting/unicasting a Mobility Gatekeeper Advertisement, comprising the computer-executable steps of:
- Mobile Terminal/Node/Entity becomes mobile and initiates an H.323 communication that includes at least one of: audio, video and data, by the Mobile Terminal/Node/Entity, with respect to notification, one of:
- H.323 Visiting/Foreign Gatekeepers within a first administrative domain, notification of H.323 mobility services availability by periodically broadcasting/multicasting/unicasting/sending a Mobility Gatekeeper Advertisement;
- the Mobile Terminal/Node/Entity lacks notification of H.323 mobility services availability, broadcasting/multicasting/unicasting/sending, by the Mobile Terminal/Node/Entity, a message to the Home Gatekeeper/Home Location Database in a second administrative domain, which notifies H.323 Visiting/Foreign Gatekeepers that the Mobile Terminal/Node/Entity needs H.323 mobility services and notifying, by the H.323 Visiting/Foreign Gatekeepers, to the Mobile Terminal/Node/Entity of available H.323 Visiting/Foreign Gatekeepers within the first administrative domain;
- H.323 Visiting/Foreign Gatekeeper with which the Mobile Terminal/Node/Entity is registered, support for the H.323 communication that includes at least one of: audio, video and data.
- FIG. 1 illustrates an embodiment of the Inter-Domain Mobility Management system of this invention which illustrates communications between two administrative domains.
- FIG. 2 illustrates another embodiment of the Inter-Domain Mobility Management system of this invention with backend services.
- FIG. 3 illustrates yet another embodiment of the Inter-Domain Mobility Management system of this invention where requests are resolved by the backend server shared among multiple administrative domains.
- FIG. 4 illustrates still another embodiment of the Inter-Domain Mobility Management system of this invention where requests are resolved by the backend server not shared among multiple administrative domains.
- FIG. 5 illustrates yet another embodiment of the Inter-Domain Mobility Management system of this invention using centralized home location function servers/databases.
- FIG. 6 illustrates still another embodiment of the Inter-Domain Mobility Management system of this invention using distributed home location function servers/databases.
- the present invention provides for extending the H.323 standard to support mobility in a multimedia communication system with services over packet-based networks.
- the present H.323 standard is known to those skilled in the art and is hereby incorporated by reference.
- the invention supports extending H.323 to support mobility in a transport independent way, create new H.323 messages and/or message elements that needed to support mobility, and facilitate interoperability for implementation of H.323 mobility over specific networking environments such as wireless/PSTN-IP-LAN.
- the invention provides for extension to existing H.225.0 (H.323) messages to accommodate mobility. Messages are provided to facilitate mobility binding as the mobile entity moves form one place to another.
- IWF interworking function
- a mobile unit implementing H.323 uses a packet-based network, e.g., the IP subnet, together with an H.323-based point of attachment (e.g., network point of attachment, zone, domain), the mobility information is managed via a gatekeeper.
- a gatekeeper at the transmitting end and at the receiving end also. If necessary, the gatekeeper can also perform bandwidth management, address translation, maps LAN aliases to IP addresses, and sets up a real-time transport control protocol (RTCP) for exchanging status information between the transmitting end and the receiving end.
- RTCP real-time transport control protocol
- a H.245 control channel is set up to provide control functions such as, for example, opening and closing data channels.
- H.323 mobility The functional requirements of H.323 mobility are primarily described at the H.323 application level as:
- Terminal Mobility the ability for a terminal to changes location, network point of attachment, and H.323 point of attachment and still be able to communicate.
- a fixed or mobile H.323 terminal must be able to reach an H.323 mobile user and vice versa. Conversations are provided even when the mobile terminal moves from one place to another with a different point of attachment or network address. Where desired, communications are also provided among the H.323 mobile users.
- Intra-zone, inter-zone (intra-domain) and/or inter-domain handoff is supported. Handoff between intra-zone, inter-zone (intradomain) and or inter-domain users is supported.
- User Mobility the ability for a user to maintain the same user identity on different terminals or terminal types.
- An H.323 user maintains the same identity and may receive the same or, where desired, different services even when the user moves. Service providers may be switched with the user maintaining the same identity.
- Mobility Management The H.323 mobility management is supported to provide registration, call establishment, roaming and handoff.
- QoS Support QoS service is maintained during intra-zone, inter-zone (intra-domain) and/or inter-domain roaming for the H.323 user.
- Authentication and security mechanisms are provided in support of H.323 mobility.
- a gatekeeper manages a zone.
- a zone is generally a collection of H.323 entities such as terminals, gateways (GWs) or interworking functions (IWFs) and multi-point controllers (MCs).
- H.323 entity has a unique network point of attachment or address, and each zone may contain many network points of attachment, subnets, or addresses under the management of a GK.
- GWs gateways
- IWFs interworking functions
- MCs multi-point controllers
- Each H.323 entity has a unique network point of attachment or address, and each zone may contain many network points of attachment, subnets, or addresses under the management of a GK.
- a zone many have multiple networks in the case of an IP, ATM, or other network. If a user or terminal moves within a zone, its network attachment or subnetwork address may also change.
- a domain may consist of a single or of multiple zones.
- H.323 mobility is addressed in terms of zones and domains as well. If an H.323 user, entity or terminal crosses a zone boundary, such a change may be termed as a change of H.323 point of attachment because an H.323 gatekeeper manages the registration of all H.323 entities in a given zone.
- H.323 services are ensured during the call and between calls while users or terminals move from place to place.
- Discrete terminal mobility or roaming the ability for a terminal to make discrete changes of physical location, i.e., to change location while no media streams are active.
- Continuous terminal mobility or handover the ability for a terminal to change location while media streams are active. Such a change may be seamless, i.e., without loss of data, or alternatively, may not be seamless, i.e., wherein some media stream data is lost.
- Service mobility the ability for a user to obtain a particular service independent of user and terminal mobility, i.e., wherein a foreign network has the means to obtain the parameters required for the service.
- Network Point of Attachment the attachment or address, e.g., an IP address, of an H.323 entity, e.g., terminals, MCUs, MCs, and/or GWs, to a network.
- an H.323 entity e.g., terminals, MCUs, MCs, and/or GWs
- Each H.323 entity has at least one network address which uniquely identifies the H.323 entity on the network. The address is specific to the network environment in which the endpoint is located. Different network environments may have different network address formats. H.323 permits an endpoint to use different network addresses for different channels within the same call.
- H.323 Point of Attachment the gatekeeper with which an H.323 terminal, GW (IWF), MC, or MCU is Databased.
- Mobile Entity the H.323 entity that changes its point of attachment (network and/or H.323 point of attachment) from one attachment to another.
- a mobile entity can continue to communicate with other H.323 entities at any location as it moves from place to place.
- Home GK a gatekeeper in the mobile entity's home zone which performs the necessary management functions for departed mobile entities and maintains current location information for each. Any H.323 GK that provides the support for H.323 mobile entities can act as a home GK.
- Home Network the network in the mobile entity's home network and the network which has been declared by the mobile entity as its home network, e.g., an IP subnetwork in the home zone declared as a home network by a mobile entity.
- IP address the address of the network point of attachment in the home network of a mobile entity, e.g., IP address (RAS transport address) in a home IP subnetwork. If the transport address contains the network address in addition to the TSAP, the home transport address will also contain the home network address.
- RAS transport address IP address
- Foreign GK a gatekeeper on a mobile entity's visited- or visiting-zone which cooperates with the home GK to have the information related to the mobile entity while it is away from its home zone. Any H.323 GK that provides the support for H.323 mobile entities can act as a foreign GK.
- Foreign Network the network in the mobile entity's foreign zone where the said network has been declared by the mobile entity as its foreign network, e.g., an IP subnetwork in a foreign zone of a mobile entity.
- Care-of Network Address the address of the network point of attachment in a foreign network of a mobile entity, e.g., IP address (RAS transport address) in a foreign IP subnetwork. If the transport address contains the network address in addition to the TSAP, the care-of transport address will also contain the care-of network address.
- IP address RAS transport address
- Visiting GK a foreign GK that the mobile entity is presently visiting, i.e., the mobile entity is currently residing within a foreign zone that is managed by a foreign GK.
- Visited GK the foreign GK that had been visited by the mobile entity previously.
- Target GK the foreign GK that the mobile entity intends to visit.
- Target Network the target network that the mobile entity intends to visit.
- Mobile GK either a home GK or a foreign GK.
- Home Zone a zone that is managed by a home GK of a mobile entity.
- Foreign Zone a zone managed by a foreign GK.
- Visiting Zone a zone other than a mobile entity's home zone in which the mobile entity is currently residing, i.e., a foreign zone in which the mobile entity is presently visiting.
- Visited Zone a zone other than a mobile entity's home zone that the mobile entity has visited previously, i.e., the foreign zone which had been visited by the mobile entity previously.
- Target Zone a zone other than a mobile entity's home zone that the mobile entity intends to visit.
- Visiting Entity a mobile entity that is residing in a visiting zone managed by a visiting GK.
- Visiting Terminal a mobile H.323 terminal that is residing in a visiting zone managed by a visiting GK.
- Visiting User a mobile H.323 terminal that is residing in a visiting zone managed by a visiting GK.
- Visitor List the list of mobile entities currently visiting a foreign zone.
- GK Advertisement for Mobility Services foreign gatekeepers advertise their presence by using a special message to provide services for mobile entities.
- Care-of Address the terminal address of the point of attachment, e.g., care-of network address of mobile entity or care-of address of a foreign GK where a mobile entity is residing.
- care-of address There are two different types of care-of address: a foreign GK care-of address with which a mobile entity is Databased; a care-of network address which the mobile entity has associated with one of its own network interfaces, e.g., a temporary IP address of the visitor may be acquired dynamically using the Dynamic Host Configuration Protocol (DHCP).
- DHCP Dynamic Host Configuration Protocol
- a location area may constitute a cell or a certain group of cells in a given geographical area that resides within a zone.
- Administrative Domain An administrative domain is a collection of H.323 entities administered by one administrative entity and may contain one or more gatekeepers (that is, one or more zones). It may also contain one or more border elements for communications between the domains. Like zone, an administrative domain can also be termed as home or foreign (visited, visiting, or target) domain.
- Mobile H.323 (Mobile H.323 Protocol): the extended and existing H.323 /H.225.0/H.245 messages that are used to support mobility in H.323 are termed as mobile H.323 protocol or simply as mobile H.323.
- H.323 mobility provides two kinds of changes in point of attachment: changing Network Point of Attachment in H.323 to H.323 calls (it can also be termed as a part of change in H.323 point of attachment), and changing H.323 Point of Attachment (e.g., change in zone or domain).
- both kinds of change in attachment can be termed as change in H.323 point of attachment.
- the change of attachment can also occur during calls, i.e., handover, and between calls, e.g., roaming.
- a change in point of attachment e.g., a change in IP address or a change in zone/domain boundary, may result in handover during the call.
- FIG. 1 illustrates an embodiment of the Inter-Domain Mobility Management system of this invention which illustrates communications between two administrative domains.
- Administrative domain 10 has a GK/BE 1b 12 , a GK 1a 14 and a GK 1c 16 .
- Administrative domain 20 has a GK/BE 2b 22 , a GK 2a 24 and a GK 2c 26 .
- a mobile H.323 entity 28 contacts the GK 2c b 26 after moving from administrative domain 10 to administrative domain 20 . Basically, the mobile entity 28 will discover the gatekeeper (GK) and then communicate with the gatekeeper (GK) for registration using the procedures as described in ITU-T Recommendation H.323, such as, GK 2c 26 of the administrative domain 20 of a given administrative domain.
- GK gatekeeper
- GK gatekeeper
- the Gate-keeper (GK) 26 will find from the registration request message that the mobile user has moved from another administrative domain and needs to communicate with the other administrative domain. As result, GK 2c 26 of the administrative domain 20 will then communicate with a border element (BE) 22 of that administrative domain 20 as appropriate depending on the needs dictated by the optimal routing so that minimal resources are used. The border element (BE) 22 will then communicate with another border element (BE) 12 of administrative domain 10 for resolving the information (e.g., address, registration, verification, authentication, etc.).
- the information e.g., address, registration, verification, authentication, etc.
- Gatekeeper discovery is the process an endpoint uses to determine which Gatekeeper to register with. This may be done manually or automatically. Manual discovery relies on methods outside the scope of this recommendation to determine which Gatekeeper an endpoint is associated with.
- the endpoint may multicast (or use other methods as described in Appendix IV/H.225.0) a Gatekeeper Request (GRQ) message, asking “Who is my Gatekeeper?”. This is sent to the Gatekeeper's well-known Discovery Multicast Address.
- GCF Gatekeeper Confirmation
- a Gatekeeper does not want the endpoint to register to it, it shall return Gatekeeper Reject (GRJ).
- FIG. 1 shows the logical communications model between the two administrative domains where no backend services (BES) are considered.
- BES provide additional value-added services, such as, for example, permanent and/or temporary address resolution/allocation services, authentication, and others using the database/server not defined in H.323 and also not shown in FIG. 1 .
- FIG. 2 illustrates another embodiment of the Inter-Domain Mobility Management system of this invention which basically describes the communications flow when the backend services (BES) (e.g., home location functions (HLFs)) are considered.
- BES backend services
- HPFs home location functions
- FIG. 1 it is assumed that mobile entity 28 has moved from administrative domain 30 to administrative domain 40 and performs the GK discovery and registers with the GK 2c 26 using H.323 procedures as described earlier.
- the relationships for communications between border elements (BEs) and backend services (BES) e.g., home location function (HLFs)
- GKs gate keepers
- the backend services (BES) of a given administrative domain can equally be accessed by both the gatekeeper (GK) and the border element (BE). However, a user can send the request for any services via the gatekeeper (GK). Upon receipt of a request for backend services the GK will examine the request and will determine that the user has moved from another administrative domain and that the related service information needs to be known from the earlier BES that is not located in this domain 40 . Then the gatekeeper (GK) decides how the backend services (BES) can be accessed to another administrative domain using the Border elements (BEs). Depending on the configuration between the administrative domains optimal routing will be provided to optimize the resource utilization. Normally the Border element (BE) is accessed if the services information needs to be resolved from another administrative domain.
- FIG. 2 shows that the backend services (BES) are being accessed from another administrative domain via the border elements (BEs).
- BES backend services
- BEs border elements
- Administrative domain 30 will have a plurality of gatekeepers 14 , 16 and backend services 34 (BES 1 a ), 36 (BES 1c ).
- the Administrative domain 40 will have a plurality of gatekeepers 24 , 26 and backend services 42 (BES 2b ), 44 (BES 2a ), 46 (BES 2c ).
- FIG. 2 also shows that the backend services (BES) (e.g., home location functions (HLFs)) information resolution is provided from another administrative domain for an H.323 mobile entity if the information is not available in a given administrative domain.
- BES backend services
- HLFs home location functions
- FIG. 3 illustrates yet another embodiment of the Inter-Domain Mobility Management system of this invention where the backend services (BES) (e.g., home location function (HLFs)) overlap or are common to both the administrative domains, and where requests are resolved by the backend server shared among multiple administrative domains.
- FIG. 3 shows a configuration 50 where a given back end services (BES) server 55 is being shared or is common between the two administrative domains, namely, administrative domain 30 and administrative domain 40 . It should also be noted that there may be other back end services (BES) servers in those domains whose services are not being shared.
- BES backend services
- the services from the non-sharing back end services (BES) server has to be accessed using the normal procedure of the H.323 protocol via gatekeepers (GKs) and/or border elements (BEs). Also shown is a mobile H.323 entity 38 .in the administrative domain that would also be sharing the back end services (BES) server 55 , and getting similar information whether it is within the home domain or in a foreign domain.
- GKs gatekeepers
- BEs border elements
- FIG. 4 illustrates still another embodiment of the Inter-Domain Mobility Management system of this invention showing the accessing of a non-sharing back end services (BES) server in two overlapping administrative domains.
- the non-shared backend services (BES) server e.g., BES 1a 34
- BES back end services
- FIG. 4 also illustrates how the inter-domain communication needs to be done in the context of H.323 communications protocol.
- the H.323 signaling messages for inter-domain communications flows from the border element (BEs) 22 , to the border element 12 between the administrative domains 40 , 30 , as discussed earlier.
- the backend services (BES) from a back end services (BES) server that reside behind a gate keeper (GK) and/or a border element (BE) may be accessed via the gate keeper (GK) and/or border element (BE) as appropriate.
- the non-shared backend services (BES) server BES 1a 34 is then accessed although the gatekeeper 14 .
- a given back end services (BES) server may be shared because of the overlapping administrative domains, and where requests are resolved by the backend server and are not shared among multiple administrative domains.
- the services from a back end server (BES) 34 can only be requested by an H.323 endpoint 28 , 38 via a gate keeper (GK) 14 (because a border element (BE) is not directly accessible by an H.323 endpoint (e.g., terminal, GW (gateway)).
- GK gate keeper
- BE border element
- the mobile entity 28 , 38 moves from one place to another and may not be aware whether it is attached to its home network address, home zone, and/or home domain.
- the MGA (mobile gatekeeper advertisement) message that helps to discover the gatekeeper (GK) for the mobile entity to receive services for receiving or sending calls will provide this information or some other mechanisms will help the mobile H.323 entity to discover that it is in a new administrative domain.
- GK gatekeeper
- the mobile entity When the mobile entity is in a foreign (visiting) administrative domain, it may so happen that there is a need to verify mobile entity's profile for proper identification, authorization, and other purposes from its home domain. If a mobile entity does not need to verify its profile from its home domain, there is almost no need for any new standard work in H.323 for mobility because re-registration mechanisms that exits in H.323 may be sufficient for this purpose.
- Inter-zone communications and the inter-domain communications will also need the following: (a) Gate-keeper (GK) discovery and identification whether it is in its home domain or in foreign domain, (b) Registration with the gate keeper (GK), (c) Location updates, (d) Smooth location updates, (e) Call establishment.
- GK Gate-keeper
- GK Registration with the gate keeper
- GK Registration with the gate keeper
- GK Location updates
- Smooth location updates (e) Call establishment.
- Border elements BEs
- GKs gate-keepers
- BES back end services
- the back end services (BES) server resides behind the gate-keepers (GKs) and border elements (BEs).
- the home location function (HLF) and visitor location function (VLF) are also considered as back end services (BES) servers that are used for storage of information related to mobility.
- the relationship between the border elements (BEs), home location function (HLFs), visitor location function (VLFs), and gate keepers (GKs) for H.323 communications protocol is the same as described in the context of Back end services (BES) servers.
- FIG. 5 illustrates yet another embodiment of the Inter-Domain Mobility Management system of this invention using a centralized home location function (HLF) server/database.
- FIG. 5 also shows the communications flows when a mobile entity moves from one administrative domain to another where each domain has only one home location function (HLF) configured in a centralized architecture.
- the mobile entity discovers the gatekeeper (GK 2c ) and finds that its is in a foreign (visiting) domain. Then the mobile entity proceeds with registration with the gatekeeper (GK) (GK 2 c).
- the gatekeeper (GK 2 c) finds that mobile H.323 entity 28 is a visitor and keeps the information in the visitor location function (VLF) (not shown in FIG. 5 for simplicity).
- VLF visitor location function
- the border element (GK/BE 2 b) 22 of the foreign domain 75 being unable to provide the information related to the mobile H.323 entity 28 then contacts the border element (GK/BE 1 b) 12 of mobile entity's home domain 70 .
- the information is then sent back from the home domain 70 to the foreign (visiting) administrative domain 75 after verifying the profile of the mobile entity 28 . (These information flows are not shown in FIG. 5 for simplicity.)
- Administrative domain 75 may have additional home location functions HLF 2 b ( 78 ) that may be available for additional information.
- FIG. 6 illustrates still another embodiment of the Inter-Domain Mobility Management system of this invention showing the inter-domain communication flow using distributed home location function (HLF) servers/databases.
- FIG. 6 also shows a configuration for communications between the two administrative domains where the home location function (HLF) function is distributed in a domain.
- the communications scenarios are almost similar as shown in FIG. 5 , but with the difference that a gate-keeper (GK) has the intelligence to decide which home location function (HLF) is needed to be accessed for resolving the information.
- GK gate-keeper
- how the decision is made by the gate-keeper (GK) for contacting a particular gate keeper (GK) and/or home location function (HLF) is not the subject of standardization.
- border element (GK/BE 2 b) 22 of the foreign (visiting) domain 75 communicates with border element (GK/BE 1 b) 12 of the home administrative domain 70
- GK/BE 1 b 12 decides that this particular mobile entity 28 is managed by GK 1 a 14 and contacts GK 1 a 14 .
- the gatekeeper (GK 1 a) 14 will then communicate with HLF 1 a 84 to verify the profile of the mobile entity 28 that is currently residing in a foreign domain 90 .
- the information relating to the mobile entity 28 that is obtained is then routed back from the home administrative domain 80 to the foreign administrative domain 90 .
- This information relating to the mobile entity 28 may be temporarily or permanently stored in HLF 2 b 92 in the foreign administrative domain 90 .
- Both administrative domains 80 and 90 may have additional home location functions HLF 1 c ( 86 ), HLF 2 a ( 94 ), HLF 2 b ( 92 ), HLF 2 c ( 96 ) that may be available for additional information
- VLF visitor location function
- HPF home location function
- the new mobility binding and updating messages proposed in contribution can also be used for inter-domain communications.
- BEs border elements
- GKs gate keepers
- HLFs home location function
- VLFs visitor location function
- Border elements can be configured as centralized, distributive, and/or hybrid architecture.
- Gatekeepers can have any architectural relationships: centralized, distributive, and/or hybrid architecture.
- HDFs Home location function
- BEs Border elements
- GKs Gate keepers
- the administrative domains can also be arranged logically among themselves in any form: centralized, distributive, and/or hybrid architecture.
- HLF Home location function
- the inter-domain communications protocol for mobility management needs to be robust enough to satisfy all probable configurations of all functional entities (e.g., border elements (BEs), gate keepers (GKs), home location function (HLFs), visitor location function (VLFs), zones, domains) whether each architectural element is configured as centralized, distributed, and/or hybrid manner.
- functional entities e.g., border elements (BEs), gate keepers (GKs), home location function (HLFs), visitor location function (VLFs), zones, domains
- BES back end services
- HLF home location function
- HLF home location function
- the invention provides a framework for how the inter-domain communications need to be done in H.323 for mobility management. It has been shown the communication flows for mobility management considering the border elements (BEs), gate keepers (GKs), home location function (HLFs), and domains where each entity can be arranged in any logical architectural relationship: centralized, distributed, and/or hybrid architecture.
- BEs border elements
- GKs gate keepers
- HLFs home location function
- domains where each entity can be arranged in any logical architectural relationship: centralized, distributed, and/or hybrid architecture.
- the messages like accessRequest and other are also need to be extended to let others know the RAS and the call signaling addresses of the mobile entity while it is visiting a foreign domain.
- This invention also shows various relationships for communications between border elements (BEs), home location function (HLFs), visitor location function (VLFs), and gate keepers (GKs).
- BEs border elements
- HLFs home location function
- VLFs visitor location function
- GKs gate keepers
- H.225.0 Annex G provides the communications between the administrative domains via the border elements (BEs).
- a domain may have one or more border elements (BEs) while these border elements (BEs) may have the logical relationship, such as, (a) centralized, (b) distributed, or (c) hybrid architecture.
- a Border element (BE) is usually co-located with a gatekeeper (GK). If they are not co-located, the communications between the border element (BE) and the gatekeeper (GK) will be done using the H.225.0 RAS signaling messages (e.g., LRQ/LCF/LRJ) for the address resolution and location update.
- H.225.0 RAS signaling messages e.g., LRQ/LCF/LRJ
- the administrative domains can also be arranged among themselves, such as (a) centralized, (b) distributed, or (c) hybrid.architectural relationship from logical communications point of view.
- a border element (BE) element configures itself with all address information obtaining the address templates in the following ways (a) static configuration with explicit provisioning with address templates for all zones for which it is responsible, (b) receiving descriptors containing the address information from other border elements (BEs) in response to general requests, and (c) receiving responses to specific queries.
- HLFs home location function
- VLFs visitor location function
- BEs border elements
- GKs gatekeepers
- a mobile entity can only communicate with the gatekeeper (GK) directly (not the border element (BE)).
- the H.323-based mobility Mobile Terminal/Node/Entity registers with the H.323 Visiting/Foreign Gatekeeper including sending registration information for the Mobile Terminal/Node/Entity using a Base Station to Base Station Controller to Mobile Switching Center to H.323 Visiting/Foreign Gatekeeper system.
- registering with the at least one H.323 Visiting/Foreign Gatekeeper includes sending registration information for the Mobile Terminal/Node/Entity using a wireless/wire-line Local Area Network to Router/Switch to H.323 Visiting/Foreign Gatekeeper system.
- the registering includes the steps of: broadcasting/multicasting/unicasting /sending, by the Home Gatekeeper, a Mobility Gatekeeper Advertisement (MGA) message periodically; broadcasting/multicasting/unicasting/sending a registration request message (RRQ) to the Home Gatekeeper by the Mobile Terminal/Node/Entity; and sending, by the Home Gatekeeper, a registration confirmation/registration rejection (RCF/RRJ) to the Mobile Terminal/Node/Entity.
- MGA Mobility Gatekeeper Advertisement
- RRQ registration request message
- RCF/RRJ registration confirmation/registration rejection
- the registering steps can also include the steps of: upon determining, by the Mobile Terminal/Node/Entity, that a network point of attachment has changed/a foreign zone has been entered, broadcasting/multicasting/unicasting /sending, by the Mobile Terminal/Node/Entity, a registration request message (RRQ) to a Foreign/Visiting Gatekeeper; broadcasting/multicasting/unicasting /sending, by the Foreign/Visiting Gatekeeper, a binding update message (BURQ) to the Home Gatekeeper; broadcasting/multicasting/unicasting/sending, by the Home Gatekeeper, a binding update confirmation/rejection (BuCF/BuRJ) to the Foreign/Visiting Gatekeeper; broadcasting/multicasting/unicasting/sending, by the Foreign/Visiting Gatekeeper, the binding update confirmation/rejection to the Mobile Terminal/Node/Entity.
- RRQ registration request message
- BURQ binding update message
- BuCF/BuRJ binding update confirmation/rejection
- the H.323-based mobility Mobile Terminal/Node/Entity would also include a situation wherein, where the Mobile Terminal/Node/Entity has already visited another zone regulated by a Visited Gatekeeper within the first administrative domain, registering includes: broadcasting/multicasting/unicasting/sending, by the Home Gatekeeper, a mobility unbinding message (UbRQ) to the Visited Gatekeeper; and broadcasting/multicasting/unicasting/sending, by the Visited Gatekeeper, a mobility unbinding confirmation/rejection (UbCF/UbRJ) to the Home Gatekeeper.
- registering would include:
- the H.323-based mobility Mobile Terminal/Node/Entity wherein at least one Visiting/Foreign Gatekeeper utilizes a combined HomeVisitor Location Database.
- the H.323-based mobility Mobile Terminal/Node/Entity wherein a plurality of Visiting/Foreign Gatekeepers each utilize an individual Visitor Location Database and share a Home Location Database.
- the H.323-based mobility Mobile Terminal/Node/Entity wherein the communication utilizes an Internet Protocol.
- This invention provides a communication link between a telephone device and/or another telephone device(s) and/or server(s). It also allows for programming a telephone device to accept or reject communications between administrative domains. This invention also allows a mobile entity unit to be in communication with a telephone network, especially when a user moves between different administrative domains.
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Abstract
Description
- broadcasting/multicasting/unicasting/sending, by the Mobile Terminal/Node/Entity, a registration request message (RRQ) to a Foreign/Visiting Gatekeeper; broadcasting/multicasting/unicasting/sending, by the Foreign/Visiting Gatekeeper, a mobility unbinding update message (UbRQ) to the Visited Gatekeeper; broadcasting/multicasting/unicasting/sending, by the Visited Gatekeeper, a mobility unbinding confirmation/rejection (UbCF/UbRJ) to the Foreign/Visiting Gatekeeper; broadcasting/multicasting/unicasting/sending, by the Foreign/Visiting Gatekeeper, a provisional registration confirmation to the Mobile Terminal/Node/TerminalEntity and
- broadcasting/multicasting/unicasting/sending, by the Foreign/Visiting Gatekeeper, a binding update message (BuRQ) to the Home Gatekeeper; and broadcasting/multicasting/unicasting/sending, by the Home Gatekeeper, a binding update confirmation/rejection (BuCF/BuRJ) to the Foreign/Visiting Gatekeeper.
- broadcasting/multicasting/unicasting/sending, by the Mobile Terminal/Node/Entity, a registration request message (RRQ) to a Foreign/Visiting Gatekeeper; broadcasting/multicasting/unicasting/sending, by the Visited Gatekeeper, a mobility unbinding confirmation/rejection (UbCF/UbRJ) to the Foreign/Visiting Gatekeeper; broadcasting/multicasting/unicasting/sending, by the Foreign/Visiting Gatekeeper, a provisional registration confirmation to the Mobile Terminal/Node/Terminal and broadcasting/multicasting/unicasting/sending, by the Foreign/Visiting Gatekeeper, a binding update message (BuRQ) to the Home Gatekeeper; broadcasting/multicasting/unicasting/sending, by the Home Gatekeeper, a binding update confirmation/rejection (BuCF/BuRJ) to the Foreign/Visiting Gatekeeper; broadcasting/multicasting/unicasting/sending, by the Home Gatekeeper, a mobility unbinding update message (UbRQ) to the Visited Gatekeeper; and broadcasting/multicasting/unicasting/sending, by the Visited Gatekeeper, a mobility unbinding confirmation/rejection (UbCF/UbRJ) to the Home Gatekeeper.
Claims (40)
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WO2001084341A1 (en) | 2001-11-08 |
US20020018476A1 (en) | 2002-02-14 |
US20050250491A1 (en) | 2005-11-10 |
CA2405044C (en) | 2007-01-23 |
WO2001084341A8 (en) | 2002-03-07 |
US6967941B2 (en) | 2005-11-22 |
CA2405044A1 (en) | 2001-11-08 |
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