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Patent · US8345626B2 · B2 · US

Handover method for minimizing packet call reconnection delay time between different mobile communication schemes and multi-mode terminal for the same

(11) Publication number
US8345626B2
(21) Application number
US-69877107-A
(22) Filing date
2007-01-26
(30) Priority date
2006-01-26
(43) Publication date
2013-01-01
(45) Date of grant
2013-01-01
(51) IPC
H04J 3/16; H04J 3/17; H04J 4/00; H04L 12/40; H04W 36/14; H04W 4/00
(52) CPC
  • H04W Wireless communication networks: 36/1443, 36/0022, 36/0058, 36/0066, 36/14, 36/24, 60/02, 76/10, 76/19, 88/06
  • E04F Finishing work on buildings, e.g. stairs, floors: 11/1817
  • F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 9/026
(73) Assignee
SAMSUNG ELECTRONICS CO LTD; NOH JEONG-MIN
(72) Inventors
NOH JEONG-MIN
(54) Title
Handover method for minimizing packet call reconnection delay time between different mobile communication schemes and multi-mode terminal for the same
(57) Abstract

Provided is a function of minimizing a delay time of a packet call disconnect due to a handover between communication networks providing a communication service using different mobile communication technologies. To do this, even though a handover situation is generated during a packet service, the packet service is continuously provided by maintaining a current mode and performing a mode change after registration in a handover target network succeeds. Accordingly, since the packet service is not provided only while a packet call connecting process is performed, a delay time according to a packet call reconnection can be minimized.

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Claims (18)

  1. A method of minimizing a delay time of a packet call reconnection in a multi-mode terminal having first and second modems supporting different communication services, the method comprising the steps of: receiving, by the first modem, a condition for beginning a packet call reconnection to a second communication network during a packet service, wherein the condition is defined by a first communication network; determining, by the first modem, whether the received packet call reconnection start condition is satisfied by monitoring a state of the packet service through the first communication network; if the packet call reconnection start condition is satisfied, receiving, by the second modem, a command from the first modem to reconnect a packet call to the second communication network to perform the packet service; and registering, by the second modem, into the second communication network in response to the command of the first modem, and connecting the packet call to the second communication network to perform the packet service, if the registration succeeds; wherein the first modem determines whether a measurement control message comprising the condition is received from the first communication network, monitors whether a state of the packet service through the first communication network satisfies the packet call reconnection start condition contained in the measurement control message, and transmits a measurement report message to the first communication network if the packet call reconnection start condition is satisfied.
  2. The method of claim 1, wherein registering, by the second modem, into the second communication network, comprises: turning on the second modem through a communication path connecting between the first and second modems; determining whether a registration process between the second modem and the second communication network succeeds while maintaining a packet call with the first communication network; if the registration process succeeds, disconnecting the packet call from the first communication network; and if the packet call with the first communication network is disconnected, the second modem connecting a packet call to the second communication network.
  3. The method of claim 1, wherein the first communication network is a wideband code division multiple access (WCDMA) network, and the second communication network is a CDMA network, and the first modem and the second modem process signals transmitted or received through the WCDMA network and the CDMA network, respectively.
  4. The method of claim 1, wherein the first communication network is a WCDMA network and the second communication network is a global systems for mobile communication (GSM) network, and the first modem and the second modem process signals transmitted or received through the WCDMA network and the GSM network, respectively.
  5. The method of claim 1, wherein the packet call reconnection start condition is contained in a measurement control message received from the first communication network.
  6. The method of claim 1, further comprising transmitting a measurement report message to the first communication network for informing that the packet service state is a state where a packet call reconnection to the first communication network must be performed if the packet call reconnection start condition is satisfied.
  7. The method of claim 6, wherein further comprising: receiving a handover command from a UTRAN (Universal Mobile Telecommunications System Radio Access Network) in response to the measurement report message; and if the handover command from the UTRAN is received, reconnecting a packet call to the second communication network to perform the packet service.
  8. The method of claim 5, wherein the step of determining whether the received packet call reconnection start condition is satisfied comprises: receiving a measurement control message from the first communication network; monitoring based on a packet call reconnection start condition contained in the measurement control message whether the multi-mode terminal is located in a boundary area; and if the multi-mode terminal is located in a boundary area, transmitting a measurement report message to the first communication network in response to the measurement control message.
  9. The method of claim 2, wherein the step of determining whether the registration process between the second modem and the second communication network succeeds, comprises: the first modem turning on the second modem through the communication path connected between the first and second modem; the second modem, which is turned on, registering in the second communication network; and if the registration in the second communication network succeeds, the first modem receiving from the second modem a message for informing of the success of the registration.
  10. The method of claim 2, wherein the step of performing the packet service, comprises: if a message for informing of success of registration in the second communication network is received from the second modem, requesting for a packet call disconnect to the first communication network; if an accept message responding to the request is received, disconnecting the packet call from the first communication network and transmitting a packet call origination message to the second modem through the communication path; commanding the second modem to request the second communication network for a packet call connection; and establishing a packet type path between the second modem and the second communication network to perform the packet service through the second communication network.
  11. A multi-mode terminal, having first and second modems supporting different communication services, for minimizing a delay time of a packet call reconnection, comprising: the first modem for receiving from a first communication network a condition for beginning a packet call reconnection to a second communication network during a packet service, determining whether the received packet call reconnection start condition is satisfied by monitoring a state of the packet service through the first communication network, and transmitting, to the second modem, a command to reconnect a packet call to the second communication network if the packet call reconnection start condition is satisfied, wherein the condition is defined by the first communication network, and wherein the first modem determines whether a measurement control message comprising the condition is received from the first communication network, monitors whether a state of the packet service through the first communication network satisfies the packet call reconnection start condition contained in the measurement control message, and transmits a measurement report message to the first communication network if the packet call reconnection start condition is satisfied; and the second modem for receiving the command to reconnect the packet call to the second communication network, registering into the second communication network in response to the command of the first modem, and connecting the packet call to the second communication network to perform the packet service if the registration succeeds.
  12. The multi-mode terminal of claim 11, wherein the first modem turns on the second modem through a communication path connected between the first and second modem if the packet call reconnection start condition is satisfied, determines whether a registration process between the second modem and the second communication network succeeds while maintaining a packet call with the first communication network, disconnects the packet call from the first communication network if the registration process succeeds, and allows the second modem to connect a packet call to the second communication network if the packet call with the first communication network is disconnected.
  13. The multi-mode terminal of claim 11, wherein the first communication network is a wideband code division multiple access (WCDMA) network and the second communication network is a CDMA network, and the first modem and the second modem process signals transmitted or received through the WCDMA network and the CDMA network, respectively.
  14. The multi-mode terminal of claim 11, wherein the first communication network is a WCDMA network and the second communication network is a global systems for mobile communication (GSM) network, and the first modem and the second modem process signals transmitted or received through the WCDMA network and the GSM network, respectively.
  15. The multi-mode terminal of claim 11, wherein the first modem monitors, based on the packet call reconnection start condition contained in a measurement control message received from the first communication network, whether the multi-mode terminal is located in a boundary area, transmits a measurement report message to the first communication network in response to the measurement control message if the multi-mode terminal is located in a boundary area, and turns on the second modem if a handover command from a UTRAN (Universal Mobile Telecommunications System Radio Access Network) is received from the first communication network in response to the transmission of the measurement report message.
  16. The multi-mode terminal of claim 15, wherein the first modem turns on the second modem through the communication path connected between the first and second modems if the handover command from the UTRAN is received, and disconnects the packet call from the first communication network if a message for informing of success of registration in the second communication network is received from the second modem.
  17. The multi-mode terminal of claim 12, wherein the first modem requests the first communication network for a packet call disconnect if a message for informing of the success of the registration in the second communication network is received from the second modem, disconnects the packet call from the first communication network if an accept message responding to the request is received from the first communication network, and transmits a packet call origination message to the second modem through the communication path.
  18. The multi-mode terminal of claim 17, wherein the second modem requests packet call connection to the second communication network if the packet call origination message is received and transmits to the first modem a message for informing of success of a packet call connection with the second communication network in response to the request if the packet call connection with the second communication network succeeds.

Description

This application claims priority under 35 U.S.C. §119 to an application entitled “Handover Method for Minimizing Packet Call Reconnection Delay Time between Different Mobile Communication Schemes and Multi-Mode Terminal for The Same” filed in the Korean Intellectual Property Office on Jan. 26, 2006 and assigned Serial No. 2006-8549, the contents of which are incorporated herein by reference.

1. Field of the Invention The present invention relates generally to a handover method for minimizing a packet call reconnection delay time between different mobile communication schemes when a packet call is disconnected due to a handover between communication networks providing a communication service using different mobile communication technologies and a multi-mode terminal for the same. 2. Description of the Related Art Recently, mobile communication networks are being upgraded from second generation (2G) networks, such as code division multiple access (CDMA) networks and European global systems for mobile communication (GSM) networks, to third generation (3G) networks such as wideband CDMA (WCDMA) networks. Since service areas using 2G schemes are widely distributed and their infrastructures are completely equipped at the present time, while the infrastructures of the 2G networks are transitionally used, areas in which the 3G networks are installed are gradually widening. Thus, in this transitional state, terminals designed to support services specified to the 3G networks are manufactured as multi-mode terminals to also support the existing 2G schemes.

Citations (16)

  • CN1620182A
  • CN1691332A
  • KR20040049124A
  • KR20050046835A
  • KR20050102370A
  • KR20060032700A
  • KR20060060784A
  • US2001016482A1
  • US2003114158A1
  • US2005128980A1
  • US2005221824A1
  • US2005236654A1
  • US2005250498A1
  • US2006126564A1
  • US6445917B1
  • WO2005114875A1
Record as JSON
{
  "publication_number": "US8345626B2",
  "country": "US",
  "kind": "B2",
  "title": "Handover method for minimizing packet call reconnection delay time between different mobile communication schemes and multi-mode terminal for the same",
  "abstract": "Provided is a function of minimizing a delay time of a packet call disconnect due to a handover between communication networks providing a communication service using different mobile communication technologies. To do this, even though a handover situation is generated during a packet service, the packet service is continuously provided by maintaining a current mode and performing a mode change after registration in a handover target network succeeds. Accordingly, since the packet service is not provided only while a packet call connecting process is performed, a delay time according to a packet call reconnection can be minimized.",
  "claims": [
    "1. A method of minimizing a delay time of a packet call reconnection in a multi-mode terminal having first and second modems supporting different communication services, the method comprising the steps of: receiving, by the first modem, a condition for beginning a packet call reconnection to a second communication network during a packet service, wherein the condition is defined by a first communication network; determining, by the first modem, whether the received packet call reconnection start condition is satisfied by monitoring a state of the packet service through the first communication network; if the packet call reconnection start condition is satisfied, receiving, by the second modem, a command from the first modem to reconnect a packet call to the second communication network to perform the packet service; and registering, by the second modem, into the second communication network in response to the command of the first modem, and connecting the packet call to the second communication network to perform the packet service, if the registration succeeds; wherein the first modem determines whether a measurement control message comprising the condition is received from the first communication network, monitors whether a state of the packet service through the first communication network satisfies the packet call reconnection start condition contained in the measurement control message, and transmits a measurement report message to the first communication network if the packet call reconnection start condition is satisfied.",
    "2. The method of claim 1, wherein registering, by the second modem, into the second communication network, comprises: turning on the second modem through a communication path connecting between the first and second modems; determining whether a registration process between the second modem and the second communication network succeeds while maintaining a packet call with the first communication network; if the registration process succeeds, disconnecting the packet call from the first communication network; and if the packet call with the first communication network is disconnected, the second modem connecting a packet call to the second communication network.",
    "3. The method of claim 1, wherein the first communication network is a wideband code division multiple access (WCDMA) network, and the second communication network is a CDMA network, and the first modem and the second modem process signals transmitted or received through the WCDMA network and the CDMA network, respectively.",
    "4. The method of claim 1, wherein the first communication network is a WCDMA network and the second communication network is a global systems for mobile communication (GSM) network, and the first modem and the second modem process signals transmitted or received through the WCDMA network and the GSM network, respectively.",
    "5. The method of claim 1, wherein the packet call reconnection start condition is contained in a measurement control message received from the first communication network.",
    "6. The method of claim 1, further comprising transmitting a measurement report message to the first communication network for informing that the packet service state is a state where a packet call reconnection to the first communication network must be performed if the packet call reconnection start condition is satisfied.",
    "7. The method of claim 6, wherein further comprising: receiving a handover command from a UTRAN (Universal Mobile Telecommunications System Radio Access Network) in response to the measurement report message; and if the handover command from the UTRAN is received, reconnecting a packet call to the second communication network to perform the packet service.",
    "8. The method of claim 5, wherein the step of determining whether the received packet call reconnection start condition is satisfied comprises: receiving a measurement control message from the first communication network; monitoring based on a packet call reconnection start condition contained in the measurement control message whether the multi-mode terminal is located in a boundary area; and if the multi-mode terminal is located in a boundary area, transmitting a measurement report message to the first communication network in response to the measurement control message.",
    "9. The method of claim 2, wherein the step of determining whether the registration process between the second modem and the second communication network succeeds, comprises: the first modem turning on the second modem through the communication path connected between the first and second modem; the second modem, which is turned on, registering in the second communication network; and if the registration in the second communication network succeeds, the first modem receiving from the second modem a message for informing of the success of the registration.",
    "10. The method of claim 2, wherein the step of performing the packet service, comprises: if a message for informing of success of registration in the second communication network is received from the second modem, requesting for a packet call disconnect to the first communication network; if an accept message responding to the request is received, disconnecting the packet call from the first communication network and transmitting a packet call origination message to the second modem through the communication path; commanding the second modem to request the second communication network for a packet call connection; and establishing a packet type path between the second modem and the second communication network to perform the packet service through the second communication network.",
    "11. A multi-mode terminal, having first and second modems supporting different communication services, for minimizing a delay time of a packet call reconnection, comprising: the first modem for receiving from a first communication network a condition for beginning a packet call reconnection to a second communication network during a packet service, determining whether the received packet call reconnection start condition is satisfied by monitoring a state of the packet service through the first communication network, and transmitting, to the second modem, a command to reconnect a packet call to the second communication network if the packet call reconnection start condition is satisfied, wherein the condition is defined by the first communication network, and wherein the first modem determines whether a measurement control message comprising the condition is received from the first communication network, monitors whether a state of the packet service through the first communication network satisfies the packet call reconnection start condition contained in the measurement control message, and transmits a measurement report message to the first communication network if the packet call reconnection start condition is satisfied; and the second modem for receiving the command to reconnect the packet call to the second communication network, registering into the second communication network in response to the command of the first modem, and connecting the packet call to the second communication network to perform the packet service if the registration succeeds.",
    "12. The multi-mode terminal of claim 11, wherein the first modem turns on the second modem through a communication path connected between the first and second modem if the packet call reconnection start condition is satisfied, determines whether a registration process between the second modem and the second communication network succeeds while maintaining a packet call with the first communication network, disconnects the packet call from the first communication network if the registration process succeeds, and allows the second modem to connect a packet call to the second communication network if the packet call with the first communication network is disconnected.",
    "13. The multi-mode terminal of claim 11, wherein the first communication network is a wideband code division multiple access (WCDMA) network and the second communication network is a CDMA network, and the first modem and the second modem process signals transmitted or received through the WCDMA network and the CDMA network, respectively.",
    "14. The multi-mode terminal of claim 11, wherein the first communication network is a WCDMA network and the second communication network is a global systems for mobile communication (GSM) network, and the first modem and the second modem process signals transmitted or received through the WCDMA network and the GSM network, respectively.",
    "15. The multi-mode terminal of claim 11, wherein the first modem monitors, based on the packet call reconnection start condition contained in a measurement control message received from the first communication network, whether the multi-mode terminal is located in a boundary area, transmits a measurement report message to the first communication network in response to the measurement control message if the multi-mode terminal is located in a boundary area, and turns on the second modem if a handover command from a UTRAN (Universal Mobile Telecommunications System Radio Access Network) is received from the first communication network in response to the transmission of the measurement report message.",
    "16. The multi-mode terminal of claim 15, wherein the first modem turns on the second modem through the communication path connected between the first and second modems if the handover command from the UTRAN is received, and disconnects the packet call from the first communication network if a message for informing of success of registration in the second communication network is received from the second modem.",
    "17. The multi-mode terminal of claim 12, wherein the first modem requests the first communication network for a packet call disconnect if a message for informing of the success of the registration in the second communication network is received from the second modem, disconnects the packet call from the first communication network if an accept message responding to the request is received from the first communication network, and transmits a packet call origination message to the second modem through the communication path.",
    "18. The multi-mode terminal of claim 17, wherein the second modem requests packet call connection to the second communication network if the packet call origination message is received and transmits to the first modem a message for informing of success of a packet call connection with the second communication network in response to the request if the packet call connection with the second communication network succeeds."
  ],
  "description_excerpt": "This application claims priority under 35 U.S.C. §119 to an application entitled “Handover Method for Minimizing Packet Call Reconnection Delay Time between Different Mobile Communication Schemes and Multi-Mode Terminal for The Same” filed in the Korean Intellectual Property Office on Jan. 26, 2006 and assigned Serial No. 2006-8549, the contents of which are incorporated herein by reference.\n\n1. Field of the Invention The present invention relates generally to a handover method for minimizing a packet call reconnection delay time between different mobile communication schemes when a packet call is disconnected due to a handover between communication networks providing a communication service using different mobile communication technologies and a multi-mode terminal for the same. 2. Description of the Related Art Recently, mobile communication networks are being upgraded from second generation (2G) networks, such as code division multiple access (CDMA) networks and European global systems for mobile communication (GSM) networks, to third generation (3G) networks such as wideband CDMA (WCDMA) networks. Since service areas using 2G schemes are widely distributed and their infrastructures are completely equipped at the present time, while the infrastructures of the 2G networks are transitionally used, areas in which the 3G networks are installed are gradually widening. Thus, in this transitional state, terminals designed to support services specified to the 3G networks are manufactured as multi-mode terminals to also support the existing 2G schemes.",
  "cpc": [
    "H04W 36/1443",
    "E04F 11/1817",
    "F16B 9/026",
    "H04W 36/0022",
    "H04W 36/0058",
    "H04W 36/0066",
    "H04W 36/14",
    "H04W 36/24",
    "H04W 60/02",
    "H04W 76/10",
    "H04W 76/19",
    "H04W 88/06"
  ],
  "ipc": [
    "H04J 3/16",
    "H04J 3/17",
    "H04J 4/00",
    "H04L 12/40",
    "H04W 36/14",
    "H04W 4/00"
  ],
  "assignees": [
    "SAMSUNG ELECTRONICS CO LTD",
    "NOH JEONG-MIN"
  ],
  "inventors": [
    "NOH JEONG-MIN"
  ],
  "filing_date": "2007-01-26",
  "publication_date": "2013-01-01",
  "grant_date": "2013-01-01",
  "priority_date": "2006-01-26",
  "application_number": "US-69877107-A",
  "family_id": "38428085",
  "citations": [
    "CN1620182A",
    "CN1691332A",
    "KR20040049124A",
    "KR20050046835A",
    "KR20050102370A",
    "KR20060032700A",
    "KR20060060784A",
    "US2001016482A1",
    "US2003114158A1",
    "US2005128980A1",
    "US2005221824A1",
    "US2005236654A1",
    "US2005250498A1",
    "US2006126564A1",
    "US6445917B1",
    "WO2005114875A1"
  ]
}

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