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US20020055971A1 - Method and system for a low-overhead mobility management protocol in the internet protocol layer - Google Patents

Method and system for a low-overhead mobility management protocol in the internet protocol layer
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Publication number
US20020055971A1
US20020055971A1US10/026,060US2606001AUS2002055971A1US 20020055971 A1US20020055971 A1US 20020055971A1US 2606001 AUS2606001 AUS 2606001AUS 2002055971 A1US2002055971 A1US 2002055971A1
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United States
Prior art keywords
host
nat
network
home
address
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US10/026,060
Inventor
Sharif Shahrier
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InterDigital Technology Corp
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InterDigital Technology Corp
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Publication date
Priority claimed from US09/997,922external-prioritypatent/US20020154613A1/en
Application filed by InterDigital Technology CorpfiledCriticalInterDigital Technology Corp
Priority to US10/026,060priorityCriticalpatent/US20020055971A1/en
Assigned to INTERDIGITAL TECHNOLOGY CORPORATIONreassignmentINTERDIGITAL TECHNOLOGY CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SHAHRIER, SHARIF M.
Priority to KR1020097003776Aprioritypatent/KR100974256B1/en
Priority to KR1020077019555Aprioritypatent/KR100914697B1/en
Priority to ES02709525Tprioritypatent/ES2262783T3/en
Priority to JP2002570503Aprioritypatent/JP2004530327A/en
Priority to CA 2438929prioritypatent/CA2438929C/en
Priority to HK04110319.9Aprioritypatent/HK1067476B/en
Priority to CN2009101394156Aprioritypatent/CN101600194B/en
Priority to CNA2009101498371Aprioritypatent/CN101605320A/en
Priority to KR1020037013811Aprioritypatent/KR100789797B1/en
Priority to KR1020037010956Aprioritypatent/KR100604170B1/en
Priority to AU2002244005Aprioritypatent/AU2002244005A1/en
Priority to KR1020077013445Aprioritypatent/KR100787085B1/en
Priority to EP20020709525prioritypatent/EP1362462B1/en
Priority to MXPA03007522Aprioritypatent/MXPA03007522A/en
Priority to KR1020087002942Aprioritypatent/KR20080025755A/en
Priority to EP20060009962prioritypatent/EP1701507B1/en
Priority to PCT/US2002/004372prioritypatent/WO2002071718A2/en
Priority to CNB028052730Aprioritypatent/CN100505739C/en
Priority to AT02709525Tprioritypatent/ATE327627T1/en
Priority to CA 2704835prioritypatent/CA2704835A1/en
Priority to DE2002611657prioritypatent/DE60211657T2/en
Priority to KR1020087016492Aprioritypatent/KR100935121B1/en
Priority to TW91102715Aprioritypatent/TW558891B/en
Priority to TW92126762Aprioritypatent/TWI272809B/en
Priority to US10/078,946prioritypatent/US7136389B2/en
Priority to MYPI20020603Aprioritypatent/MY127553A/en
Priority to ARP020100591prioritypatent/AR032817A1/en
Assigned to INTERDIGITAL TECHNOLOGY CORPORATIONreassignmentINTERDIGITAL TECHNOLOGY CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: CHITRAPU, PRABHAKAR R., SHAHRIER, SHARIF M.
Publication of US20020055971A1publicationCriticalpatent/US20020055971A1/en
Priority to NO20033676Aprioritypatent/NO20033676L/en
Priority to US11/542,842prioritypatent/US7573890B2/en
Priority to JP2008032217Aprioritypatent/JP5042874B2/en
Priority to US12/414,021prioritypatent/US8213385B2/en
Priority to HK10105654.4Aprioritypatent/HK1138981B/en
Priority to US13/540,424prioritypatent/US8792323B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A system and method for supporting mobile Internet communication is provided which employs a Mobile-Home Database (MHD) for Network Address Translation routers (NATs). A plurality of Mobile Nodes (MNs), each having a home network, communicate within the system via a plurality of Hosts. Each Host is associated with a NAT such that each NAT is associated with one network, but one or more Hosts. Each network's NAT's MHD identifies each network's home MNs, with a) a local address of a current association of the MN with a Host within the network or b) a binding defined by a local address of an association of the MN with a Host in a foreign network and the global address of the NAT of the foreign network. Each network's NAT's MHD also identifies each visiting MN with a local address of a current Host association of the MN.

Description

Claims (7)

What is claimed is:
1. A network system for supporting mobile Internet communication comprising:
a plurality of networks, each having:
a Network Address Translation router (NAT) with a unique global address;
at least one Host associated with the network's NAT; and
at least one Mobile Node (MN);
each Host having a service area in which it can communicate data to the MNs;
each MN having a home Host in a home network which defines a default local address which is paired with the global address of the home network's NAT to define a default binding of the MN;
the NAT of each network having an associated Mobile-Home Database (MHD) which identifies:
each MN, which has the network as its home network, with:
a local address of a current association of the MN with a Host in the network, or
a binding defined by a local address of an association of the MN with a Host in a different network and the global address of the different network's NAT; and
each visiting MN, which is a MN currently associated with a Host within the network, but has a different home network, with a local address of the current Host association of the MN;
each MN being movable from a location where the MN communicates data via a first associated Host in a first network having a first NAT to:
a location within the service area of a second Host within the first network to communicate data via the second Host by communicating to the MHB of the first NAT a local address reflecting the MN's association with the second Host; or
a location within the access range of a third Host within a different second network having a second NAT to communicate data via the third Host by communicating to the MHB of the second NAT a local address reflecting the MN's association with the third Host and, where the second network is not the MN's home network, by also communicating to the MHB of the MN's home network's NAT a binding including a new local address reflecting the MN's association with the third Host and the global address of the second NAT;
such that a data communication from a corresponding node (CN) to a selected MN is communicated to the selected MN by:
establishing a binding based on the MN's default binding or the binding reflected in the MHB of the MN's home network's NAT, and
directing the communication to the local address identified for the MN in the MHB of the NAT with which the binding is established.
2. A network system according toclaim 1 wherein at least one network has a plurality of Hosts and at least one Host is the home Host for a plurality of MNs.
3. A network system according toclaim 1 wherein each network's NAT's MHD identifies local and global addresses and a location field such that:
each MN, which has the network as its home network, is identified with:
a local address of a current association of the MN with a Host in the network, a null global address, and a home flag in the location field, or
a binding defined by a local address of an association of the MN with a Host in a different network and a global address of the different network's NAT and an away flag in the location field; and
each visiting MN is identified with:
a local address of the current Host association of the MN, a null global address, and a home flag in the location field.
4. A method for mobile Internet communication system which includes a plurality of networks each having a Network Address Translation router (NAT) and a unique global address, at least one Host associated with the NAT, and at least one Mobile Node (MN), each Host having a service area in which it can communicate data to the MNs, each MN having a home Host and a home network which defines a default local address which is paired with the global address of the HN's NAT to define a default binding of the MN, the method comprising:
providing an associated Mobile-Home Database (MHD) for the NAT of each network which identifies:
each MN, which has the network as its home network, with:
a local address of a current association of the MN with a Host within the network, or
a binding defined by a local address of an association of the MN with a Host within a different network and the global address of the different network's NAT; and
each visiting MN, which is a MN currently associated with a Host within the network, but has a different home network, with a local address of the current Host association of the MN;
when a MN moves from a location where the MN communicates data via a first associated Host within a first network having a first NAT to a location within the service area of a second Host within the first network to communicate data via the second Host, communicating to the MHB of the first NAT a local address reflecting the MN's association with the second Host;
when a MN moves from a location where the MN communicates data via the first associated Host within the first network to a location within the access range of a third Host within a different second network having a second NAT, to communicate data via the third Host, communicating to the MHB of the second NAT a local address reflecting the MN's association with the third Host and, where the second network is not the MN's home network, by also communicating to the MHB of the MN's home network's NAT a binding including a new local address reflecting the MN's association with the third Host and the global address of the second NAT; and
communicating a data communication from a corresponding node (CN) to a selected MN by:
establishing a binding with a NAT based on the MN's default binding or the binding reflected in the MHB of the MN's home network's NAT, and
directing the communication to the local address identified in the MHB of the NAT with which the binding is established for the MN.
5. A method according toclaim 4 wherein:
each network's NAT's MHD identifies local and global addresses and a location field such that:
each MN, which has the network as its home network, is identified with:
a 24 bit local address of a current association of the MN with a Host in the network, a null global address, and a home flag in the location field, or
a binding defined by a local address of an association of the MN with a Host within a different network and a global address of the different network's NAT and an away flag in the location field; and
each visiting MN is identified with:
a local address of the current Host association of the MN, a null global address, and a home flag in the location field; and
a binding is established between the CN and an MN based on the binding reflected in the MHB of the MN's home network's NAT when the corresponding location field has an away flag.
6. A Network Address Translation router (NAT) for a network system which includes a plurality of networks, each having a NAT with a unique global address, at least one Host associated with the NAT and at least one Mobile Node (MN), each Host having a service area in which it can communicate data to the MNs, each MN having a home Host and home network which defines a default local address which is paired with the global address of the home network's NAT to define a default binding of the MN, the NAT comprising:
a Mobile-Home Database (MHD) which identifies:
each MN, which has as its home Host, a Host associated with the NAT, with:
a local address of a current association of the MN with a Host associated with the NAT, or
a binding defined by a local address of an association of the MN with a Host not associated with the NAT and the global address of the NAT associated with that Host; and
each MN, which is currently associated with a Host associated with the NAT, but has a home Host which is not associated with the NAT, with a local address of the current Host association;
such that a data communication from a corresponding node (CN) to a selected MN which has as its home Host, a Host associated with the NAT, is communicated to the selected MN by:
establishing a binding based on the MN's default binding or the binding reflected in the MHB of the NAT, and
if the binding is established is established with the NAT, directing the communication to the local address identified in the MHB.
7. A NAT according toclaim 6 wherein the MHD identifies 24 bit local and global addresses and a location field such that:
each MN, which has as its home Host, a Host associated with the NAT, is identified with:
a 24 bit local address of a current association of the MN with a Host associated with the NAT, a null global address, and a home flag in the location field, or
a binding defined by a 24 bit local address of an association of the MN with a Host not associated with the NAT and a 24 bit global address of the NAT associated with that Host and an away flag in the location field; and
each MN, which is currently associated with a Host associated with the NAT, but has a home Host which is not associated with the NAT, is identified with:
a 24 bit local address of the current Host association of the MN, a null global address, and a home flag in the location field.
US10/026,0601999-11-012001-12-19Method and system for a low-overhead mobility management protocol in the internet protocol layerAbandonedUS20020055971A1 (en)

Priority Applications (34)

Application NumberPriority DateFiling DateTitle
US10/026,060US20020055971A1 (en)1999-11-012001-12-19Method and system for a low-overhead mobility management protocol in the internet protocol layer
AT02709525TATE327627T1 (en)2001-02-212002-02-14 SYSTEM AND METHOD FOR A MOBILITY MANAGEMENT PROTOCOL WITH LOW ADDITIONAL EFFORT IN AN INTERNET PROTOCOL LAYER
DE2002611657DE60211657T2 (en)2001-02-212002-02-14 SYSTEM AND METHOD FOR A MOBILITY MANAGEMENT PROTOCOL WITH LOW ADDITIONAL EXPENSE IN AN INTERNET PROTOCOL LAYER
CNB028052730ACN100505739C (en)2001-02-212002-02-14Method and system for low overhead mobility management protocol in internet protocol layer
KR1020077019555AKR100914697B1 (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
ES02709525TES2262783T3 (en)2001-02-212002-02-14 A METHOD AND SYSTEM FOR A REDUCED TARE MOBILITY MANAGEMENT PROTOCOL IN THE INTERNET PROTOCOL LAYER.
JP2002570503AJP2004530327A (en)2001-02-212002-02-14 Method and system for low overhead mobility management protocol at internet protocol layer
CA 2438929CA2438929C (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
HK04110319.9AHK1067476B (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
CN2009101394156ACN101600194B (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
CNA2009101498371ACN101605320A (en)2001-02-212002-02-14 Method and system for low overhead mobility management protocol in internet protocol layer
KR1020037013811AKR100789797B1 (en)2001-02-212002-02-14 Method and System for Low-Boverhead Mobility Manager Protocol within Internet Protocol Layer
KR1020037010956AKR100604170B1 (en)2001-02-212002-02-14 Method and System for Low-Boverhead Mobility Manager Protocol within Internet Protocol Layer
AU2002244005AAU2002244005A1 (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
KR1020077013445AKR100787085B1 (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
EP20020709525EP1362462B1 (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
MXPA03007522AMXPA03007522A (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer.
KR1020087002942AKR20080025755A (en)2001-02-212002-02-14 Method and System for Low-Boverhead Mobility Manager Protocol within Internet Protocol Layer
EP20060009962EP1701507B1 (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
KR1020097003776AKR100974256B1 (en)2001-02-212002-02-14 Communication network device configured to facilitate communication over the internet of a plurality of mobile nodes
PCT/US2002/004372WO2002071718A2 (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
KR1020087016492AKR100935121B1 (en)2001-02-212002-02-14A communications network apparatus configured to facilitate communication of a plurality of mobile nodes over the internet
CA 2704835CA2704835A1 (en)2001-02-212002-02-14A method and system for a low-overhead mobility management protocol in the internet protocol layer
TW92126762ATWI272809B (en)2001-02-212002-02-18A method and system for a low-overhead mobility management protocol in the internet protocol layer
TW91102715ATW558891B (en)2001-02-212002-02-18A method and system for a low-overhead mobility management protocol in the internet protocol layer
US10/078,946US7136389B2 (en)2001-02-212002-02-20Method and system for a low-overhead mobility management protocol in the internet protocol layer
MYPI20020603AMY127553A (en)2001-02-212002-02-21A method and system for a low-overhead mobility management protocol in the internet protocol layer.
ARP020100591AR032817A1 (en)2001-02-212002-02-21 A METHOD AND SYSTEM FOR A LOW PERFORMANCE MOBILITY MANAGEMENT PROTOCOL IN THE INTERNET PROTOCOL LAYER
NO20033676ANO20033676L (en)2001-02-212003-08-19 Procedure and system for low management mobility management in the Internet protocol layer
US11/542,842US7573890B2 (en)2001-02-212006-10-04Method and system for a low-overhead mobility management protocol in the internet protocol layer
JP2008032217AJP5042874B2 (en)2001-02-212008-02-13 Method and system for low overhead mobility management protocol in internet protocol layer
US12/414,021US8213385B2 (en)2001-02-212009-03-30Method and apparatus for wireless communication with low-overhead mobility management
HK10105654.4AHK1138981B (en)2001-02-212010-06-09A method and system for a low-overhead mobility management protocol in the internet protocol layer
US13/540,424US8792323B2 (en)2001-02-212012-07-02Method and apparatus for wireless communication with low-overhead mobility management

Applications Claiming Priority (8)

Application NumberPriority DateFiling DateTitle
JP311703/19991999-11-01
US27019001P2001-02-212001-02-21
US27076701P2001-02-222001-02-22
US29384701P2001-05-252001-05-25
US29616801P2001-06-062001-06-06
US30904601P2001-07-312001-07-31
US09/997,922US20020154613A1 (en)2001-02-212001-11-30Method and system for a low-overhead mobility management protocol in the internet protocol layer
US10/026,060US20020055971A1 (en)1999-11-012001-12-19Method and system for a low-overhead mobility management protocol in the internet protocol layer

Related Parent Applications (2)

Application NumberTitlePriority DateFiling Date
US09/997,922Continuation-In-PartUS20020154613A1 (en)1999-11-012001-11-30Method and system for a low-overhead mobility management protocol in the internet protocol layer
US09/997,992Continuation-In-PartUS6433195B1 (en)1999-11-012001-11-30Production methods of 5-phthalancarbonitrile compound and an intermediate therefor

Related Child Applications (2)

Application NumberTitlePriority DateFiling Date
US09/997,922Continuation-In-PartUS20020154613A1 (en)1999-11-012001-11-30Method and system for a low-overhead mobility management protocol in the internet protocol layer
US10/078,946Continuation-In-PartUS7136389B2 (en)2001-02-212002-02-20Method and system for a low-overhead mobility management protocol in the internet protocol layer

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US20020055971A1true US20020055971A1 (en)2002-05-09

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US10/026,060AbandonedUS20020055971A1 (en)1999-11-012001-12-19Method and system for a low-overhead mobility management protocol in the internet protocol layer
US10/078,946Expired - Fee RelatedUS7136389B2 (en)2001-02-212002-02-20Method and system for a low-overhead mobility management protocol in the internet protocol layer
US11/542,842Expired - Fee RelatedUS7573890B2 (en)2001-02-212006-10-04Method and system for a low-overhead mobility management protocol in the internet protocol layer
US12/414,021Expired - Fee RelatedUS8213385B2 (en)2001-02-212009-03-30Method and apparatus for wireless communication with low-overhead mobility management
US13/540,424Expired - Fee RelatedUS8792323B2 (en)2001-02-212012-07-02Method and apparatus for wireless communication with low-overhead mobility management

Family Applications After (4)

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US10/078,946Expired - Fee RelatedUS7136389B2 (en)2001-02-212002-02-20Method and system for a low-overhead mobility management protocol in the internet protocol layer
US11/542,842Expired - Fee RelatedUS7573890B2 (en)2001-02-212006-10-04Method and system for a low-overhead mobility management protocol in the internet protocol layer
US12/414,021Expired - Fee RelatedUS8213385B2 (en)2001-02-212009-03-30Method and apparatus for wireless communication with low-overhead mobility management
US13/540,424Expired - Fee RelatedUS8792323B2 (en)2001-02-212012-07-02Method and apparatus for wireless communication with low-overhead mobility management

Country Status (15)

CountryLink
US (5)US20020055971A1 (en)
EP (2)EP1701507B1 (en)
JP (2)JP2004530327A (en)
KR (5)KR20080025755A (en)
CN (3)CN101605320A (en)
AR (1)AR032817A1 (en)
AT (1)ATE327627T1 (en)
AU (1)AU2002244005A1 (en)
CA (2)CA2438929C (en)
DE (1)DE60211657T2 (en)
ES (1)ES2262783T3 (en)
MX (1)MXPA03007522A (en)
NO (1)NO20033676L (en)
TW (2)TWI272809B (en)
WO (1)WO2002071718A2 (en)

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