Method and system for providing dial-up data sessions
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H04Q-007/00
H04L-012/66
출원번호
US-0893137
(2001-06-27)
발명자
/ 주소
Chaturvedi,Pawan
Senogles,Brian L.
출원인 / 주소
Sprint Spectrum L.P.
인용정보
피인용 횟수 :
7인용 특허 :
12
초록▼
A method and system for responding to a request to establish a dial-up data session from a user terminal to a remote destination. Instead of initiating a dial-up data session, the user terminal will initiate a packet-data session with a translation node and will provide the translation node with inf
A method and system for responding to a request to establish a dial-up data session from a user terminal to a remote destination. Instead of initiating a dial-up data session, the user terminal will initiate a packet-data session with a translation node and will provide the translation node with information about initiating the dial-up data session. The translation node will then initiate circuit-data session with the remote destination and will bridge the packet-data session with the circuit-data session, so as to establish an end-to-end data session between the user terminal and the remote destination. Advantageously, by setting up a packet-data session between the user terminal and the translation node, the underlying data may be carried over an access link at a higher service level than would normally be provided for a circuit-data session carried over that access link. Further, this can be done transparently to a user.
대표청구항▼
We claim: 1. In a network of the type comprising an access link for communicatively coupling user terminals with an access node, wherein the access node provides connectivity with a plurality of destinations including packet-terminated destinations and circuit-terminated destinations, and wherein c
We claim: 1. In a network of the type comprising an access link for communicatively coupling user terminals with an access node, wherein the access node provides connectivity with a plurality of destinations including packet-terminated destinations and circuit-terminated destinations, and wherein communications from user terminals to a packet-terminated destination, when carried over the access link, are carried over the access link at a first service level, and communications from user terminals to a circuit-terminated destination, when carried over the access link, are carried over the access link at a second service level different than the first service level, a method comprising: (a) receiving a user request to establish a communication session from a user terminal to a specified circuit-terminated destination; and (b) in response to the user request, (i) setting up a first session from the user terminal to an intermediate packet-terminated destination via a communication path including the access link, so that the first session is carried over the access link at the first service level, (ii) setting up a second session from the intermediate packet-terminated destination to the specified circuit-terminated destination, and (iii) bridging the first session with the second session to produce an end-to-end session from the user terminal to the specified destination, wherein the first service level comprises a first data rate for communication over the access link, and the second service level comprises a second data rate for communication over the access link, the first data rate being higher than the second data rate. 2. The method of claim 1, wherein the access link comprises an air interface. 3. The method of claim 1, wherein the user terminal comprises a mobile station and the access node comprises a base station. 4. The method of claim 3, wherein the user terminal further comprises a host device linked with the mobile station. 5. The method of claim 1, wherein the user request to establish a communication session from a user terminal to the specified circuit-terminated destination comprises a request to establish a dial-Lip data connection from the user terminal to a telephone number of the specified circuit-terminated destination. 6. The method of claim 5, further comprising receiving the user request at the user terminal. 7. The method of claim 6, wherein setting up the first session from the user-terminal to the intermediate packet-terminated destination comprises: sending an origination message from the user terminal to the access node. 8. The method of claim 7, further comprising: sending the telephone number of the specified circuit-terminated destination from the user terminal to the access node; and sending the telephone number of the specified circuit-terminated destination from the access node to the intermediate packet-terminated destination. 9. The method of claim 5, wherein setting up the second session from the intermediate packet-terminated destination to the specified circuit-terminated destination comprises: the intermediate packet-terminated destination placing a dial-up call to the telephone number. 10. The method of claim 9, wherein the user request defines user-account information, the method further comprising: sending the user-account information from the user terminal to the access node; sending the user-account information from the access-node to the intermediate packet-terminated destination; and sending the user-account information from the intermediate packet-terminated destination to the specified circuit-terminated destination. 11. The method of claim 10, wherein the user account information comprises a username and a password. 12. The method of claim 1, wherein setting up the first session from the user-terminal to the intermediate packet-terminated destination comprises setting up the first session over an air interface. 13. The method of claim 12, wherein setting up the first session from the user-terminal to the intermediate packet-terminated destination comprises the user terminal sending an origination message over the air interface to a radio access system, the origination message including a packet-data service code. 14. The method of claim 12, wherein setting up the first session from the user-terminal to the intermediate packet-terminated destination comprises: setting up a PPP session between (i) the user terminal and (ii) an entity that is arranged to forward packets of the session to the intermediate packet-terminated destination. 15. The method of claim 12, wherein each of a plurality of packets sent from the user terminal to the intermediate packet-terminated destination in the first session comprises an identifier, and wherein setting up the first session from the user terminal to the intermediate packet-terminated destination comprises: setting up a PPP session between (i) the user terminal and (ii) an entity that is arranged to forward each packet to the intermediate packet-terminated destination in response to a determination that the packet includes the identifier. 16. The method of claim 15, further comprising: programming the entity to forward to the intermediate packet-terminated destination each packet that includes the identifier. 17. The method of claim 15, wherein the identifier comprises a predetermined network address. 18. The method of claim 1, further comprising: performing step (b) transparently to the user. 19. The method of claim 1, further comprising: using a network access server as the intermediate packet-terminated destination. 20. A system comprising a user terminal including: a first processor; a first data storage mechanism; a first communication interface for communicating over an air interface; a first user-input means for receiving a user request to establish a dial-up data session with a specified circuit-terminated destination; a first set of instructions stored in the first data storage mechanism and executable by the first processor, in response to the user request, (i) to send a session-setup message via the air interface requesting establishment of a packet-data session and (ii) once the packet-data session is established, to send packets that include dial-up data as payload and that include a predetermined identifier associated with a dial-up data session; a translation node including (a) a second processor, (b) a second data storage mechanism, (c) a second communication interface for receiving packet-data, the second communication interface receiving the packets and providing the packets to the second processor, (d) a third communication interface for sending circuit-data, and (e) a second set of instructions stored in the second data storage mechanism and executable by the second processor (i) to translate the packets into outgoing circuit-data and (ii) to provide the outgoing circuit-data to the third communication interface for transmission of the outgoing circuit-data to the specified circuit-terminated destination; and an entity including (a) a third processor, (b) a third data storage mechanism, (c) a fourth communication interface for communicating packet-data, the fourth communication interface receiving the packets and providing the packets to the third processor, and (d) a third set of instructions stored in the third data storage medium and executable by the third processor, for each packet, to detect the predetermined identifier in the packet and to responsively send the packet to the translation node. 21. The system of claim 20, wherein the entity is a PDSN.
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