WO2009089704A1 - Procédé, système et dispositif associé pour traiter un service du domaine à commutation de circuits dans un réseau par paquets évolué - Google Patents

Procédé, système et dispositif associé pour traiter un service du domaine à commutation de circuits dans un réseau par paquets évolué Download PDF

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Publication number
WO2009089704A1
WO2009089704A1 PCT/CN2008/073200 CN2008073200W WO2009089704A1 WO 2009089704 A1 WO2009089704 A1 WO 2009089704A1 CN 2008073200 W CN2008073200 W CN 2008073200W WO 2009089704 A1 WO2009089704 A1 WO 2009089704A1
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WIPO (PCT)
Prior art keywords
service
user equipment
message
management entity
unit
Prior art date
Application number
PCT/CN2008/073200
Other languages
English (en)
French (fr)
Inventor
Yijun Yu
Original Assignee
Huawei Technologies Co., Ltd.
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Huawei Technologies Co., Ltd. filed Critical Huawei Technologies Co., Ltd.
Priority to EP08870552.0A priority Critical patent/EP2228970B1/en
Priority to EP16205680.8A priority patent/EP3176992B1/en
Priority to JP2010542499A priority patent/JP4912500B2/ja
Priority to ES08870552.0T priority patent/ES2442743T3/es
Publication of WO2009089704A1 publication Critical patent/WO2009089704A1/zh
Priority to US12/831,437 priority patent/US8493934B2/en
Priority to US13/557,033 priority patent/US8493938B2/en
Priority to US13/924,606 priority patent/US9161269B2/en
Priority to US14/859,196 priority patent/US9894563B2/en
Priority to US15/874,391 priority patent/US10531343B2/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0011Control or signalling for completing the hand-off for data sessions of end-to-end connection
    • H04W36/0022Control or signalling for completing the hand-off for data sessions of end-to-end connection for transferring data sessions between adjacent core network technologies
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • H04W68/02Arrangements for increasing efficiency of notification or paging channel
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/18Management of setup rejection or failure

Definitions

  • the present invention relates to the field of communications, and in particular, to a processing method, system, and related device for circuit domain services in an evolved packet network.
  • 3GPP Long Term Evolution develop a plan by the end of 2004 (LTE, Long Term Evolution) 0 in the evolution
  • LTE Packet Switched
  • EPS Evolved Packet System
  • CS fallback process a method for processing a CS service in an EPS network, which may also be referred to as a CS fallback process. method.
  • the Mobile Switch Center When the Mobile Switch Center (MSC) receives an MT (Mobile Terminated) service, for example, it can be CS voice, and the MSC sends a paging message to the Mobility Management Entity (MME).
  • MME Mobility Management Entity
  • the MME performs paging on the user equipment (UE) through the EPS network.
  • the eNodeB After the eNodeB receives the paging message, the eNodeB first performs a PS service handover procedure, that is, the eNodeB switches the PS service currently being performed by the UE. To the PS domain in the GPRS/UMTS network, the eNodeB then switches the UE to the second generation (2G)/Third Generation (3G) network, that is, the UE selects a 2G/3G cell.
  • 2G 2G
  • the inventor has found that the prior art has the following problems: In the existing CS fallback method, the eNodeB directly performs the PS service switching process after receiving the paging message of the MME, which will The following problems occur:
  • the eNodeB will PS The service is switched to the PS domain of the 2G/3G network, and the MT service is connected.
  • the actual situation often occurs when the UE is switched to 2G/3G, and after the MT service is turned on, the user is unwilling to answer or cannot answer the call and rejects the MT service.
  • the eNodeB considers the MT After the service ends, the eNodeB then switches the PS service of the UE back to the EPS network. Since the prior art performs two PS service switching in order to provide but not normally performed MT services, the network resources are wasted.
  • the UE is performing a PS service (such as a video conference) in the EPS network.
  • the UE receives a MT service (such as a private telephone) in the CS domain.
  • the eNodeB switches the video conference to 2G.
  • the PS domain in the 2G/3G cannot support some PS services in the EPS network, such as video conferencing. Therefore, the PS service fails, which affects the current PS service development of the UE.
  • the technical problem to be solved by the embodiments of the present invention is to provide a method, a system, and a related device for processing a circuit domain service in an evolved packet network, which can avoid waste of network resources and does not affect the current PS service development of the UE.
  • a method for processing a circuit domain service in an evolved packet network comprising:
  • the mobility management entity receives the terminal call service indication sent by the mobile switching center;
  • the mobility management entity receives a terminal call service response returned by the user equipment, and performs subsequent operations according to the terminal call service response.
  • a method for processing a circuit domain service in an evolved packet network comprising:
  • the mobility management entity receives the short message sent by the mobile switching center
  • the mobility management entity If the user equipment is in an active state, the mobility management entity sends a short message to the user equipment; if the user equipment is in an idle state, the mobility management entity activates the user equipment, and sends a short message to the user.
  • the mobility management entity receives a short message response sent by the user equipment.
  • a mobility management entity that includes: a paging message receiving unit, configured to receive a terminal call service indication sent by the mobile switching center, a terminal call service notification unit, configured to send the terminal call service indication to the user equipment, and a response receiving unit, configured to receive the user equipment Returned call service response;
  • the response processing unit is configured to perform subsequent operations according to the terminal call service response.
  • a mobility management entity that includes:
  • a receiving unit configured to receive a short message sent by the mobile switching center
  • a status determining unit configured to determine whether the user equipment is in an active state or an idle state
  • a sending subunit configured to send the receiving unit to the user equipment when the state determining unit determines that the user equipment is in an active state The short message received
  • activating the sending unit configured to: when the state determining unit determines that the user equipment is in an idle state, activate the user equipment, and send the short message received by the receiving unit to the activated user equipment;
  • the short message response receiving unit is configured to receive a short message response sent by the user equipment.
  • a user equipment including:
  • a notification receiving unit configured to receive a terminal call service indication sent by the mobility management entity
  • a prompting unit configured to prompt the user to have a terminal call service after the notification receiving unit receives the terminal call service indication
  • the response sending unit is configured to return a terminal call service response to the mobile management entity according to the user's selection of the terminating service.
  • a circuit domain service returns a processing system of a traditional network, including: a mobile switching center, a mobile management entity;
  • the mobile switching center specifically includes: a service indication sending unit;
  • the service indication sending unit is configured to: after receiving the terminal call service indication, send the terminal call service indication to the mobility management entity;
  • the mobility management entity specifically includes:
  • a paging message receiving unit configured to receive a terminal call service indication sent by the mobile switching center, a terminal call service notification unit, configured to send the terminal call service indication to the user equipment, and a response receiving unit, configured to receive the The terminating service response returned by the user equipment;
  • the response processing unit is configured to perform subsequent operations according to the terminal call service response.
  • the MME when the MT service of the CS domain arrives, the MME first sends an MT service indication, notifying the UE that the MT service arrives, and then, after receiving the terminal call service response returned by the UE, according to the terminating call service. The response is followed. Therefore, in the method provided by the embodiment of the present invention, when the MT service arrives, the MME does not trigger the eNodeB to switch the PS service of the UE, but notifies the UE that the MT service arrives, and then returns the terminal call according to the UE. The service responds to the subsequent operations, thereby avoiding waste of network resources caused by unnecessary PS service switching, and does not affect the current PS service development of the UE.
  • FIG. 1 is a flowchart of a CS fallback method according to an embodiment of the present invention
  • FIG. 2 is a signaling flowchart of a CS fallback method according to a first embodiment of the present invention
  • FIG. 3 is a signaling flowchart of activating a UE and notifying a UE that an MT service arrives according to the first embodiment of the present invention
  • FIG. 4 is a signaling flowchart of a CS fallback method according to a second embodiment of the present invention
  • FIG. 5 is a signaling flowchart of activating a UE and notifying a UE of an MT service arrival according to a second embodiment of the present invention
  • FIG. 6 is a flowchart of signaling a MT service recovery method according to an embodiment of the present invention.
  • FIG. ⁇ is a schematic diagram showing the composition of a CS fallback system according to an embodiment of the present invention.
  • the CS fallback processing method includes:
  • Step 101 The MME receives an MT service indication sent by the MSC.
  • Step 102 The MME sends the MT service indication to the UE.
  • the MME service indication is used to notify the UE that an MT service is currently present
  • Step 103 The MME receives an MT service response returned by the UE.
  • Step 104 The MME performs subsequent operations according to the MT service response.
  • the MME When the MT service of the CS domain arrives, the MME first sends an MT service indication to notify the UE that the MT service arrives. Then, after receiving the MT service response returned by the UE, the MME performs subsequent operations according to the MT service response. Therefore, in the method provided by the embodiment of the present invention, when the MT service arrives, the MME does not trigger the eNodeB to switch the PS service of the UE, but notifies the UE that the MT service arrives, and then returns the MT service according to the UE. The subsequent operations are performed in response to the network resource waste caused by the unnecessary PS service switching, and the current PS service of the UE is not affected.
  • the MT service response may carry the user selection result, and the MME performs subsequent operations according to the MT service response, and if the user selects the result as rejecting the MT service, the MME sends the The MSC returns an MT service reject message.
  • the MME sends a PS service switching request to the eNodeB, and after receiving the handover request, the eNodeB performs a PS service switching procedure, and switches the UE to the 2G/3G network, and the UE switches to the 2G.
  • the eNodeB After the /3G network, the first paging response message is sent to the MSC, and the MT service processing is completed.
  • the MME may not switch the current PS service of the UE according to the operator policy configured by the network. Therefore, the MME does not need to send the PS service switch to the eNodeB. The request, the subsequent eNodeB does not need to perform the PS handover procedure.
  • the UE directly transfers to the 2G/3G network to complete the MT service processing.
  • the CS fallback processing method provided by the embodiment of the present invention is described above.
  • the specific signaling implementation process of the foregoing method is described below.
  • a specific signaling implementation process of a CS fallback processing method includes:
  • Step 201 The MSC receives the MT service indication, and sends a first paging message to the MME.
  • the first paging message may carry the international mobile subscriber identity of the UE.
  • IMSI International Mobile Subscriber Identity
  • Step 202 After receiving the first paging message, the MME queries the status of the UE. If the UE is in the idle state, the MME sends a second paging message to the eNodeB. If the UE is in the active state, the process proceeds to step 205.
  • the first paging message may include a ⁇ service indication sent by the MSC to the ,, and therefore, the first paging message may also be named as a service request message and the like.
  • step 302 after receiving the first paging message, the first paging message needs to be parsed, and the ⁇ service indication is obtained after parsing Next, the step of querying the state of the UE is performed.
  • the first paging message may not include the ⁇ service indication.
  • needs to be set to perform the step of querying the UE status as long as the first paging message is received.
  • the first paging message is equivalent to the ⁇ service indication.
  • Step 203 The eNodeB broadcasts the second paging message in a cell under its jurisdiction
  • Step 204 After receiving the second paging message, the UE returns a service request message to the MME.
  • the MME sends the second paging message through the eNodeB to activate the UE in the idle state.
  • Step 205 After receiving the service request message, the MME sends an MT service indication message to the UE, where the MT service indication message is used to notify the UE that the MT service is currently present.
  • the MT service indication message in FIG. 2 is a non-access layer (Non Access Stratum,
  • the MT service indication message is directly sent by the MME to the UE.
  • the MT service indication message may also be an access layer message (for example, a paging message), where the access layer message may carry an MT service indication, which is sent by the MME to the eNodeB, and then The eNodeB sends to the UE, which does not affect the implementation of the embodiment of the present invention.
  • Step 206 After receiving the MT service indication message, the UE prompts the user to have an MT service to arrive.
  • the UE prompts the user to have an MT service according to the preset setting of the user, for example, the UE may adopt The method of ringing or vibrating or ringing and vibrating can also use text prompting to prompt the user to have MT service.
  • the UE After the user selects the MT service, the UE performs step 207.
  • Step 207 The UE returns an MT service response to the MME.
  • the MT service response may carry the user selection result (accept or reject), or may not carry the selection result, that is, the user selection result is empty.
  • the MME may determine the user selection result according to the default setting, which is a common The case is: If the MT service response does not carry the selection result, the MME may accept the MT service by default.
  • the MME If the UE rejects the MT service, indicating that the MT service is not to be carried out, the MME returns a first paging reject message to the MSC, and ends the MT service. It can be seen that, in the method provided by the embodiment of the present invention, if the UE does not perform the MT service, the eNodeB does not switch the PS service of the UE, thereby avoiding waste of network resources caused by unnecessary PS service switching, and Does not affect the development of the current PS service of the UE.
  • the first paging reject message may carry the value of the related reason for rejecting the MT service, and may not carry the relevant cause value, and does not affect the implementation of the embodiment of the present invention.
  • the MME may consider that the user rejects the MT service, and the MME sends a first paging reject message to the MSC, rejecting the MT service.
  • Step 209 The MME sends a PS service switching request message to the eNodeB.
  • Step 210 After receiving the PS service switching request message, the eNodeB initiates a PS service switching process, and switches the UE to the 2G/3G network.
  • Step 211 After the UE switches to the 2G/3G network, the UE sends a first paging response message to the MSC, and completes the MT service processing.
  • the MME may not query the UE status. At this time, the MME defaults to the UE, and then the MME sends the second homing to the UE.
  • the call message and the MT service indication message notify the UE in the activated state or the idle state that the MT service arrives.
  • the above is the signaling implementation process provided by the first embodiment of the present invention.
  • the MME may not use the steps 202 to 205 provided in the first embodiment of the present invention.
  • the UE in the idle state or the activated state may have the MT service, and may also notify the UE in the idle state or the activated state to have the MT industry by using the signaling procedure shown in FIG.
  • the signaling process includes:
  • Step 301 After receiving the first paging message sent by the MSC, the MME sends a third paging message to the eNodeB, where the third paging message carries at least the MT service indication.
  • the MT service indication may be a paging cause value in the third paging message, or may be an independent cell in the third paging message, and does not affect the embodiment of the present invention. Implementation.
  • Step 302 The eNodeB broadcasts the third paging message in a cell under its jurisdiction
  • Step 303 After receiving the third paging message, the UE prompts the user to have an MT service.
  • the difference between the signaling flow shown in FIG. 3 and steps 202 to 205 in the first embodiment of the present invention is as follows:
  • the MME of the first embodiment of the present invention sends a message to notify the UE that the MT service is available only after the UE is in the active state.
  • the UE is in the active state, and the MME is already in the active state when receiving the first paging message. It may be that the MME turns the UE into an active state by paging the UE.
  • the MME does not determine whether the UE is in an active state, and directly informs the UE that the MT service arrives by sending a third paging message.
  • the MME when the UE is in the idle state, the MME sends the second paging message and the MT service indication message to notify the UE that the MT service arrives.
  • the MME When the UE is in the active state, the MME directly sends the MT service indication message. The UE is notified that the MT service arrives.
  • the advantage of using the signaling procedure is that it does not affect the paging mechanism in existing EPS networks.
  • the MME sends a third paging message of the carried MT service indication to the UE to notify the UE that the MT service arrives.
  • the advantage of adopting the signaling procedure is that the processing efficiency of the MME is improved. , and reduced call delay.
  • the first paging message sent by the MSC to the MME may further carry MT business related information.
  • the MT service related information includes: a mobile subscriber's international number (MSISDN) of the calling party, or a related service type indication, such as a short message service (SMS), a location service (Location Service, LCS) ), as well as Unstructured Supplementary Service Data (USSD).
  • MSISDN mobile subscriber's international number
  • SMS short message service
  • LCS location service
  • USSD Unstructured Supplementary Service Data
  • the MSC determines the MT service corresponding to the response message. Therefore, the MT service related message may further include: an MT service identifier, where the MT service identifier may be allocated or utilized by the MSC (eg, Call number, etc.).
  • the first paging message sent by the MSC to the MME carries the information related to the MT service, and the information about the MT service may be further carried in the paging message or the MT service indication message sent by the MME to the UE.
  • the user is prompted to have an MT service.
  • the UE may display the MSISDN number of the calling party to the user, or may prompt the service type to the user.
  • the second embodiment further provides a CS fallback processing method, where the method further includes:
  • the MME sends an MT service hold message to the MSC;
  • the method further includes:
  • the MME notifies the MSC to restore the MT service; the MSC determines whether the MT service can be restored, and if so, the MME notifies the UE to go to the 2G/3G network, and the UE completes The MT service, or the MME triggers the eNodeB to complete the MT service after switching the UE to the 2G/3G network according to the configured operator policy. If the MSC cannot recover the MT service, the recovery process ends.
  • FIG. 4 is a specific signaling flowchart of a CS fallback processing method according to a second embodiment of the present invention.
  • the signaling process allows a user to select and maintain an MT service, where the process includes:
  • Step 401 After receiving the MT service request, the MSC sends a first paging message to the MME. In order to prevent the MT service from being held for a long time, the system resources are occupied.
  • the method may further include: preset call hold timer duration Step, and, the first paging message further carries the duration of the call hold timer;
  • Step 402 The MME queries the status of the UE corresponding to the IMSI. If the UE is in the idle state, the MME sends a fourth paging message to the eNodeB. If the UE is in the active state, the process proceeds to step 405.
  • Step 403 The eNodeB broadcasts the fourth paging message in the cell under its jurisdiction.
  • Step 404 After receiving the fourth paging message, the UE returns a service request message to the MME.
  • Step 405 The MME sends the MT service to the UE.
  • the indication message is used to notify the UE that the MT service arrives.
  • the ME service indication message may carry the MT service related information and/or the call hold timer duration, or may not be carried, and does not affect the implementation of the embodiment of the present invention.
  • Step 406 After receiving the MT service indication message, the UE prompts the user to have an MT service to arrive.
  • the UE if the MT service indication message carries the MT service related information, the UE is preset according to the user, according to The information about the MT service is received, and the user is prompted to have the MT service. For example, the UE may display the MSISDN number of the calling party to the user, or may prompt the service type to the user.
  • the specific prompting method may be a method of ringing or vibrating or ringing and vibrating, or a text prompting method.
  • the UE After the user selects the MT service, the UE performs step 407.
  • Step 407 The UE sends an MT service response to the MME.
  • the MT service response may carry the user's selection result (accept, reject, or hold), or may not carry the selection result.
  • the MME may determine the user's selection result according to the default setting. A common situation is: If the MT service response does not carry the selection result, the MME may accept the service by default.
  • the UE If the user selects "keep” the service, the UE starts the corresponding timer according to the duration of the call hold timer.
  • Step 408 The MME obtains the selection result carried in the MT service response. If the result of the user selection is to maintain the MT service, the MME sends an MT service hold message to the MSC. If the result of the user selection is to reject or accept the MT service, subsequent The processing procedure is the same as that of the first embodiment of the present invention. Please refer to the related parts in the foregoing, and no further details are provided here.
  • Step 409 Start the related timer according to the preset call hold timer duration.
  • the MME may not query the UE status.
  • the MME defaults to the UE, and then the MME sends the fourth homing to the UE.
  • the call message and the MT service indication message notify the UE in the activated state or the idle state that the MT service arrives.
  • Step 402 ⁇ Step 405 can be used to notify the UE in the idle state or the activated state that the MT service arrives.
  • the signaling process shown in FIG. 5 may be used to notify the UE in the active state or the idle state that the MT service arrives.
  • the signaling process includes:
  • Step 501 After receiving the first paging message sent by the MSC, the MME sends a fifth paging message to the eNodeB, where the fifth paging message carries at least the MT service indication.
  • the MT service request message may further carry the preset call hold timer duration and/or the MT service related information.
  • Step 502 The eNodeB broadcasts the fifth paging message in a cell under its jurisdiction
  • Step 503 After receiving the fifth paging message, the UE prompts the user to have an MT service.
  • the above is the CS fallback processing method provided by the embodiment of the present invention, and a specific implementation process thereof.
  • the MT service that the user keeps, if the user chooses to perform the MT service, the MT service needs to be restored.
  • the user requests to restore the MT service if the UE starts the timer when the MT service is maintained, the UE needs to query. Whether the timer has exceeded the call hold time. If the time limit has been exceeded, the recovery process ends. If the process is not exceeded, the recovery process is performed.
  • the embodiment of the present invention provides a recovery MT.
  • Figure 6 For the signaling process of the service, see Figure 6, including:
  • Step 601 If the UE is in an idle state, the UE sends a service request message to the MME, and after the UE transitions from the idle state to the active state, step 602 is performed; if the UE is in the active state, step 602 is directly performed;
  • Step 602 The UE sends a first MT service activation request message to the MME, requesting to restore the reserved MT service.
  • the MT service activation request message may carry the MT service identifier that needs to be activated, so that the MME determines the MT service that needs to be activated. In some scenarios (such as the UE has only one maintained service), the MT service identifier may not be carried. The implementation of the embodiments of the present invention is not affected.
  • Step 603 The MME sends a second MT service activation request message to the MSC.
  • Step 604 After receiving the second MT service activation request message, the MSC matches the held MT service according to the MT service identifier. If the service exists, the MSC accepts the activation request, and stops the call hold. a timer, allocates related resources, and sends a second to the MME The MT service activation response message, where the second MT service activation response message carries the cause value of the operation success. Otherwise, the MSC rejects the activation request, and the MSC sends a second MT service activation response message to the MME, where the second MT service activation response message carries the cause value of the operation failure.
  • the MSC terminates the hold of the MT service, releases the reserved resources, and stops the timer.
  • response messages may be sent to the MME, and the response message may also carry the MT service identifier, so that the UE determines the MT service that needs to respond.
  • Step 605 After the MME receives the second MT service activation response message, the MME may
  • the UE returns a first MT service activation response message
  • the first MT service activation response message may carry the MT service identifier carried in the second MT service activation response message, and the MME may not send the first MT service activation response message, which does not affect the implementation of the present invention.
  • Step 606 The MME sends a PS service switching request message to the eNodeB.
  • the MME may not switch the current PS service of the UE according to the operator policy configured by the network. Therefore, the MME does not need to send a PS service switching request to the eNodeB, and the subsequent eNodeB does not need to perform the PS handover process.
  • Step 607 After receiving the PS service switching request message, the eNodeB initiates a PS service switching procedure, and switches the UE to the 2G/3G network.
  • Step 608 After the UE switches to the 2G/3G network, the UE sends a first paging response to the MSC to complete the MT service processing.
  • the CS fallback processing method provided by the embodiment of the present invention is described above.
  • the UE may directly use the signaling in the EPS network to send the service to the UE without using the UE.
  • the short message service is further carried in the first paging message, and then the short message is sent to the UE through the EPS network, and the UE receives the short message.
  • the related processing is completed.
  • the mobility management entity receives the terminal call service indication sent by the mobile switching center;
  • the mobility management entity receives a terminal call service response returned by the user equipment, and performs subsequent operations according to the terminal call service response.
  • the above-mentioned storage medium may be a read only memory, a magnetic disk or an optical disk or the like.
  • a CS fallback system includes: MME701,
  • the MSC 702 includes: a service indication sending unit 7021; the service indication sending unit 7021, configured to send an MT service indication to the MME 701 after receiving the MT service indication;
  • the MME 701 provided by the embodiment of the present invention includes:
  • the paging message receiving unit 7011 is configured to receive the MT service indication sent by the MSC 702, and the terminal call service notification unit 7012 is configured to send the MT service indication to the UE.
  • the response receiving unit 7013 is configured to receive an MT service response returned by the UE 704.
  • the response processing unit 7014 is configured to perform subsequent operations according to the MT service response.
  • the MT service response carries a user selection result
  • the response processing unit specific 7014 includes:
  • a first response message processing unit configured to: if the user selection result is to reject the MT service, return an MT service reject message to the MSC 702;
  • a second response processing unit configured to return an MT service hold message to the MSC 702 if the user selection result is to maintain the MT service
  • the third response processing unit is configured to trigger the UE 704 to go to the 2G/3G network if the user selection result is to accept the MT service, or the user selection result is empty.
  • the MME 701 further includes: an activation request receiving unit, configured to receive a first MT service activation request message sent by the UE 704 to restore the held MT service, in order to enable the user to recover the held MT service;
  • An activation request sending unit configured to send a second MT service activation request message to the MSC 702, and an activation response receiving unit, configured to receive the second MT service activation response returned by the MSC 702 a message, and notifying the UE 704 to go to the 2G/3G network;
  • the MSC 702 further includes:
  • An activation request receiving unit configured to receive the second service activation request message sent by the UI
  • an activation response sending unit configured to return the second service activation response message after the activation request receiving unit receives the request message.
  • the terminal call service notification unit 7012 specifically includes:
  • a user equipment activation unit configured to activate the UE 704 by using an eNodeB 703;
  • the status query unit is configured to query the status of the UE 704, and if the UE 704 is in an active state, trigger the sending unit, and if the UE 704 is in an idle state, trigger the user equipment to activate the unit;
  • a sending unit configured to send a terminal call service indication to the user equipment when the user equipment is in an active state.
  • the user equipment activation unit may have two implementation manners:
  • the unit specifically includes:
  • a paging message sending unit configured to send a second paging message to the eNodeB 703;
  • the service request receiving unit is configured to trigger the MT service notification unit 7012 after receiving the service request message returned by the UE 704.
  • the user equipment activation unit is an activation and notification unit, and the activation and notification unit is configured to send, to the eNodeB 703, a third paging message that carries an MT service indication, where the activation and notification unit passes to the eNodeB 703.
  • Sending a third paging message not only activates the UE, but also implements sending an MT service indication to the UE.
  • the embodiment of the present invention further provides an MME, in a CS fallback scenario, a method for processing an MT service such as a short message.
  • the MME can include:
  • a receiving unit configured to receive a short message sent by the mobile switching center
  • a status determining unit configured to determine whether the user equipment is in an active state or an idle state
  • a sending subunit configured to send the receiving unit to the user equipment when the state determining unit determines that the user equipment is in an active state The short message received
  • Activating a sending unit configured to: when the state determining unit determines that the user equipment is in an idle state, activate the user equipment, and send the short message received by the receiving unit to the activated user equipment;
  • the short message response receiving unit is configured to receive a short message response sent by the user equipment.
  • the foregoing activation sending unit may include:
  • a paging sending unit configured to send a second paging message to the evolved base station
  • a message receiving unit configured to receive a service request message returned by the user equipment
  • a short message sending unit configured to send a short message to the user equipment according to the service request message obtained by the return message receiving unit
  • the activation sending unit may include:
  • a carrying paging sending unit configured to send, to the evolved base station, a third paging message that carries the short message.
  • an embodiment of the present invention further provides a UE 704, including:
  • the notification receiving unit 7041 is configured to receive a terminal call service indication sent by the MME 701.
  • the prompting unit 7042 is configured to prompt the user to have a terminating service after the notification receiving unit 8041 receives the terminal call service indication;
  • the response sending unit 7043 is configured to return an MT service response to the MME according to the user's selection of the MT service.
  • the foregoing UE may further include: an activation request sending unit, configured to send a first terminal call service activation request message to the mobility management entity, requesting to restore the held MT service, in order to restore the maintained MT service.
  • an activation request sending unit configured to send a first terminal call service activation request message to the mobility management entity, requesting to restore the held MT service, in order to restore the maintained MT service.
  • the foregoing UE may further include: a terminating service processing unit, configured to process the terminating call service.

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Description

演进分组网络中电路域业务的处理方法、 系统及相关设备 本申请要求于 2008 年 1 月 16 日提交中国专利局、 申请号为 200810002762.X,发明名称为 "演进分组网络中电路域业务的处理方法、 系统 及相关设备"的中国专利申请的优先权,其全部内容通过引用结合在本申请中。 技术领域
本发明涉及通信领域,尤其涉及一种演进分组网络中电路域业务的处理方 法、 系统及相关设备。
背景技术
为了应对无线宽带技术的挑战, 保持第三代伙伴计划 ( The 3fd Generation Partnership Project, 3 GPP )网络的领先优势 , 3GPP在 2004年底制定了长期演 进计划(LTE, Long Term Evolution )0 在该演进计划的指导下定义了新的移动 通信网络架构, 该架构只保留了分组交换(Packet Switched, PS )域, 因此, 该架构被称为演进分组系统( Evolved Packet System , EPS )。
为了使处在 EPS网络中的用户能够进行电路交换 ( Circuit Switch, CS ) 业务, 现有技术提出了一种 EPS网络中 CS业务的处理方法, 该方法亦可称为 CS回退(fallback )处理方法。
当移动交换中心( Mobile Switch Center, MSC )收到一个终呼( MT, Mobile Terminated )业务时,例如,可以是 CS语音,该 MSC向移动管理实体( Mobility Management Entity, MME )发送寻呼消息, MME通过 EPS网络对用户设备 ( User Equipment, UE )进行寻呼, 当演进基站( eNodeB ) 收到该寻呼消息 后, eNodeB先执行 PS业务切换流程, 即 eNodeB将 UE当前正在进行的 PS 业务切换到 GPRS/UMTS网络中的 PS域, 然后, eNodeB将 UE切换到第二代 移动通信 ( Second Generation, 2G ) /第三代(Third Generation, 3G ) 网络, 即 UE选择一个 2G/3G的小区进行驻扎, 并且, 在 UE向 GPRS/UMTS网络中 的 MSC返回寻呼响应后, 完成 MT业务处理。
在对现有技术的研究和实践过程中 , 发明人发现现有技术存在以下问题: 在现有的 CS fallback方法中, eNodeB在收到 MME的寻呼消息后直接执 行 PS业务切换流程 , 这会产生以下问题:
1、 导致网络资源浪费。 按照现有技术, MT业务到达时, eNodeB会将 PS 业务切换到 2G/3G网络的 PS域, 接通 MT业务。 但实际情况经常会存在当 UE被切换到 2G/3G, 接通 MT业务后, 用户不愿意接听或无法接听而拒绝该 MT业务的情况, 对于这种没有正常开展的 MT业务, eNodeB会认为 MT业 务结束, 然后, eNodeB又将该 UE的 PS业务切换回 EPS网络。 由于现有技 术为了提供但没有正常开展的 MT业务进行了两次 PS业务切换, 从而导致网 络资源的浪费。
2、影响 UE当前 PS业务的开展。 比如, UE正在 EPS网络中进行一个 PS 业务(如视频会议),此时, UE收到一个 CS域的 MT业务(如一个私人电话), 按照现有技术, eNodeB会将该视频会议切换到 2G/3G的 PS域, 由于 2G/3G 中的 PS域不能支持 EPS网络中的某些 PS业务, 例如视频会议, 因此, 会导 致该 PS业务失败, 影响了 UE当前 PS业务的开展。
发明内容
本发明实施例要解决的技术问题是提供一种演进分组网络中电路域业务 的处理方法、 系统及相关设备, 能够避免网络资源浪费, 并且, 不影响 UE当 前 PS业务的开展。
为解决上述技术问题, 本发明所提供的实施例是通过以下技术方案实现 的:
一种演进分组网络中电路域业务的处理方法, 包括:
移动管理实体接收移动交换中心发送的终呼业务指示;
所述移动管理实体将所述终呼业务指示发送给用户设备;
所述移动管理实体接收所述用户设备返回的终呼业务响应,根据所述终呼 业务响应进行后续操作。
一种演进分组网络中电路域业务的处理方法, 包括:
移动管理实体接收移动交换中心发送的短消息;
若所述用户设备处于激活状态,则所述移动管理实体发送短消息至所述用 户设备; 若所述用户设备处于空闲状态, 则所述移动管理实体激活所述用户设 备, 发送短消息给用户设备;
所述移动管理实体接收所述用户设备发送的短消息响应。
一种移动管理实体, 包括: 寻呼消息接收单元, 用于接收移动交换中心发送的终呼业务指示; 终呼业务通知单元, 用于将所述终呼业务指示发送给用户设备; 响应接收单元 , 用于接收所述用户设备返回的终呼业务响应;
响应处理单元, 用于根据所述终呼业务响应, 进行后续操作。
一种移动管理实体, 包括:
接收单元, 用于接收移动交换中心发送的短消息;
状态判断单元, 用于判断所述用户设备处于激活状态还是空闲状态; 发送子单元, 用于在所述状态判断单元判断所述用户设备处于激活状态 时, 向所述用户设备发送所述接收单元接收到的所述短消息;
激活发送单元,用于在所述状态判断单元判断所述用户设备处于空闲状态 时, 激活所述用户设备,发送所述接收单元接收到的所述短消息给激活后的用 户设备;
短消息响应接收单元, 用于接收所述用户设备发送的短消息响应。
一种用户设备, 包括:
通知接收单元, 用于接收移动管理实体发送的终呼业务指示;
提示单元, 用于在所述通知接收单元接收到终呼业务指示后,提示用户有 终呼业务到来;
响应发送单元, 用于根据用户对所述终呼业务的选择, 向所述移动管理实 体返回终呼业务响应。
一种电路域业务返回传统网络的处理系统, 包括: 移动交换中心, 移动管 理实体;
所述移动交换中心具体包括: 业务指示发送单元;
所述业务指示发送单元, 用于在接收到终呼业务指示后,将终呼业务指示 发送给移动管理实体;
所述移动管理实体具体包括:
寻呼消息接收单元, 用于接收所述移动交换中心发送的终呼业务指示; 终呼业务通知单元, 用于将所述终呼业务指示发送给用户设备; 响应接收单元, 用于接收所述用户设备返回的终呼业务响应;
响应处理单元, 用于根据所述终呼业务响应, 进行后续操作。 上述技术方案具有如下有益效果:
在本发明实施例中, 当 CS域的 MT业务到来时 , MME先发送 MT业务 指示, 通知 UE有 MT业务到来, 然后,在接收到 UE返回的终呼业务响应后, 根据所述终呼业务响应进行后续操作。由此可见,本发明实施例提供的方法中 , 当 MT业务到来时 , MME并不触发 eNodeB对所述 UE的 PS业务进行切换, 而是通知 UE有 MT业务到来,再根据 UE返回的终呼业务响应进行后续操作, 从而避免了因无谓的 PS业务切换所导致的网络资源浪费, 并且, 不影响 UE 当前 PS业务的开展。
附图说明
图 1所示为本发明实施例提供的 CS fallback方法流程图;
图 2所示为本发明第一实施例提供的 CS fallback方法信令流程图; 图 3所示为本发明第一实施例提供的激活 UE并通知 UE有 MT业务到来 的信令流程图;
图 4所示为本发明第二实施例提供的 CS fallback方法信令流程图; 图 5所示为本发明第二实施例提供的激活 UE并通知 UE有 MT业务到来 的信令流程图;
图 6所示为本发明实施例提供的 MT业务恢复方法信令流程图;
图 Ί所示为本发明实施例提供的 CS fallback系统组成示意图。
具体实施方式
为使本发明实施例的目的、技术方案、及优点更加清楚明白, 以下参照附 图对本发明实施例提供的技术方案进行详细说明。
当 CS域的 MT业务到来时,请参见图 1 ,本发明实施例提供的 CS fallback 处理方法包括:
步骤 101 : MME接收 MSC发送的 MT业务指示;
步骤 102: MME将所述 MT业务指示发送给 UE;
其中, 所述 MME业务指示用于通知 UE当前有 MT业务到来;
步骤 103 : MME接收 UE返回的 MT业务响应;
步骤 104: MME根据所述 MT业务响应, 进行后续操作。
以上为本发明实施例提供的一种 CS fallback处理方法, 在本发明实施例 中, 当 CS域的 MT业务到来时 , MME先发送 MT业务指示, 通知 UE有 MT 业务到来, 然后, 在接收到 UE返回的 MT业务响应后, 根据所述 MT业务响 应进行后续操作。由此可见,本发明实施例提供的方法中, 当 MT业务到来时, MME并不触发 eNodeB对所述 UE的 PS业务进行切换, 而是通知 UE有 MT 业务到来, 再根据 UE返回的 MT业务响应进行后续操作, 从而避免了因无谓 的 PS业务切换所导致的网络资源浪费,并且,不影响 UE当前 PS业务的开展。
本发明实施例在具体实现时, MT业务响应中可以携带用户选择结果, 则 MME根据所述 MT业务响应, 进行后续操作则若用户选择结果为拒绝所述 MT业务, 则所述 MME向所述 MSC返回 MT业务拒绝消息。
若用户选择结果为接受所述 MT业务, 则 MME向 eNodeB发送 PS业务 切换请求, eNodeB接收到所述切换请求后, 执行 PS业务切换流程, 并将 UE 切换到 2G/3G网络, UE切换到 2G/3G网络后, 向 MSC发送第一寻呼响应消 息, 并完成 MT业务处理。
在本发明其他实施例中, 若用户选择结果为接受所述 MT业务, 则 MME 亦可 据网络配置的运营商策略, 不切换 UE 当前的 PS业务, 因此, MME 不需要向 eNodeB发送 PS业务切换请求,后续 eNodeB也不需要执行 PS切换 流程。 此时, UE在发送完接受所述 MT业务的响应消息后, 或者, 收到 MME 发送的对 UE接受所述 MT业务消息的响应后, 直接转到 2G/3G网络完成 MT 业务处理。
以上介绍了本发明实施例提供的 CS fallback处理方法, 以下介绍上述方 法的具体信令实现过程。
请参见图 2,为本发明第一实施例提供的 CS fallback处理方法的具体信令 实现过程, 包括:
步骤 201 : MSC接收 MT业务指示, 并向 MME发送第一寻呼消息; 在具体实现时, 所述第一寻呼消息可以携带 UE 的国际移动用户识别码
( International Mobile Subscriber Identity, IMSI )。
步骤 202: MME在收到所述第一寻呼消息后, 查询 UE的状态, 若 UE 处于空闲状态, 则 MME向 eNodeB发送第二寻呼消息, 若 UE处于激活状态, 则进入步骤 205; 在具体实现时 , 所述第一寻呼消息可以包含 MSC发送给 ΜΜΕ的 ΜΤ业 务指示, 因此, 所述第一寻呼消息也可以命名为 ΜΤ业务请求消息等类似的名 称。 并且, 若第一寻呼消息包含了所述 ΜΤ业务指示, 则步骤 302中 ΜΜΕ在 收到第一寻呼消息后, 需要解析第一寻呼消息, 并在解析得到所述 ΜΤ业务指 示的情况下, 执行查询 UE状态的步骤。
另夕卜,所述第一寻呼消息中亦可不包含 ΜΤ业务指示,此时,需要将 ΜΜΕ 设置为只要 ΜΜΕ接收到第一寻呼消息, 则 ΜΜΕ执行查询 UE状态的步骤。 在该情况中, 第一寻呼消息相当于 ΜΤ业务指示。
步骤 203: eNodeB在其管辖的小区内广播所述第二寻呼消息;
步骤 204: UE收到第二寻呼消息后 , 向 MME返回服务请求消息; 其中, MME通过 eNodeB发送第二寻呼消息是为了将处于空闲状态的 UE 激活。
步骤 205: MME在收到所述服务请求消息后, 向 UE发送 MT业务指示 消息, 所述 MT业务指示消息用于通知 UE当前有 MT业务到来;
其中, 图 2所述 MT业务指示消息是一个非接入层 (Non Access Stratum,
NAS)消息, 因此, 所述 MT业务指示消息由 MME直接发送给 UE。 在本发明 其他实施例中, 所述 MT业务指示消息也可以是一个接入层消息(如, 寻呼消 息), 该接入层消息中可以携带 MT业务指示, 由 MME先发送给 eNodeB, 再 由 eNodeB发送给 UE, 并不影响本发明实施例的实现。
步骤 206: UE收到所述 MT业务指示消息后, 提示用户有 MT业务到来; 在具体实现时, UE按照用户预先设置, 采用相应的提示方式, 提示用户 有 MT业务到来, 比如, UE可以采用响铃或震动或响铃并震动的方式, 也可 以采用文本提示的方式, 提示用户有 MT业务到来。
在用户对所述 MT业务进行选择后 , UE执行步骤 207。
步骤 207: UE向 MME返回 MT业务响应;
其中, 所述 MT业务响应中可以携带用户选择结果(接受或拒绝), 也可 以不携带选择结果, 即用户选择结果为空, 此时, MME可以根据默认设置判 断用户的选择结果, 一种常见的情况是: 如果所述 MT业务响应没有携带选择 结果, 则 MME可以默认用户接受所述 MT业务。 步骤 208: MME获取 MT业务响应携带的选择结果, 若用户的选择结果 是拒绝所述 MT业务, 则 MME向 MSC发送第一寻呼拒绝消息(即前文已述 的 MT业务拒绝消息), 若用户的选择结果是接受所述 MT业务, 则进入步骤 209;
其中, 如果 UE拒绝该 MT业务, 说明该 MT业务不用开展, 则 MME向 所述 MSC返回第一寻呼拒绝消息, 结束此次 MT业务。 由此可见, 本发明实 施例提供的方法中, 若 UE并没有开展 MT业务, 则 eNodeB不对该 UE的 PS 业务进行切换 , 从而避免了因无谓的 PS业务切换所导致的网络资源浪费, 并 且, 不影响 UE当前 PS业务的开展。
其中, 所述第一寻呼拒绝消息中可以携带拒绝所述 MT业务的相关原因 值, 亦可不携带相关原因值, 并不影响本发明实施例的实现。
此外,现实中经常存在用户长时间没有看到或者没有感觉到 UE提示的情 况, 因此, 为了提高 MME的工作效率, 可以预先定义若 MME在预置的时间 T内 , 没有收到 UE发送的 MT业务响应消息 , 则 MME可以认为用户拒绝了 此次 MT业务, 并且, MME向 MSC发送第一寻呼拒绝消息, 拒绝此次 MT 业务。
步骤 209: MME向 eNodeB发送 PS业务切换请求消息;
步骤 210: eNodeB收到所述 PS业务切换请求消息后, 发起 PS业务切换 流程, 并将 UE切换到 2G/3G网络;
步骤 211 : UE切换到 2G/3G网络后, 向 MSC发送第一寻呼响应消息, 并完成所述 MT业务处理。
其中, 在本发明其他实施例中, MME在收到所述第一寻呼消息后, 亦可 不查询 UE状态, 此时, MME默认 UE均处于空闲状态, 然后, MME通过向 UE发送第二寻呼消息及 MT业务指示消息 , 通知处于激活状态或空闲状态的 UE有 MT业务到来。
以上为本发明第一实施例提供的信令实现过程, 当 MME收到步骤 301中 MSC发送的第一寻呼消息后, MME除了可以采用本发明第一实施例提供的 步骤 202〜步骤 205通知处于空闲状态或激活状态的 UE有 MT业务到来外, 还可以采用图 3所示的信令流程通知处于空闲状态或激活状态的 UE有 MT业 务到来, 所述信令流程包括:
步骤 301 : MME在收到 MSC发送的第一寻呼消息后, 向 eNodeB发送第 三寻呼消息, 所述第三寻呼消息至少携带 MT业务指示;
在具体实现时,所述 MT业务指示可以是第三寻呼消息中的一个寻呼原因 值, 或者, 也可以是第三寻呼消息中的一个独立的信元, 并不影响本发明实施 例的实现。
步骤 302: eNodeB在其管辖的小区内广播所述第三寻呼消息;
步骤 303: UE收到所述第三寻呼消息后, 提示用户有 MT业务到来。 图 3所示的信令流程与本发明第一实施例中步骤 202〜步骤 205的区别在 于:
本发明第一实施例 MME仅当 UE处于激活态后, 才发送消息通知 UE有 MT业务到来, 上述 UE处于激活态可以是 MME在收到第一寻呼消息时, UE 已经处于激活态; 也可以是 MME通过寻呼 UE, 使 UE转为激活态。 而图 3 所示的信令流程中, MME不判断 UE是否处于激活态, 直接通过发送第三寻 呼消息通知 UE有 MT业务到来。 具体的:
本发明第一实施例中, 当 UE处于空闲态时, MME通过发送第二寻呼消息 及 MT业务指示消息通知 UE有 MT业务到来; 而当 UE处于激活态时, MME直接 发送 MT业务指示消息通知 UE有 MT业务到来。 采用所述信令流程的好处在于 不影响现有 EPS网络中的寻呼机制。
图 3所示的信令流程中 , MME通过向 UE发送一个携带的 MT业务指示 的第三寻呼消息, 通知 UE有 MT业务到来, 采用所述信令流程的好处在于提 高了 MME的处理效率 , 并减少了呼叫时延。
为了使 UE可以了解 MT业务发起方 (主叫方) 的信息 , 方便用户进行 MT 业务的选择, 在上述及后续实施例提供的方法中, MSC向 MME发送的第一寻 呼消息还可以进一步携带 MT业务相关信息。
所述 MT业务相关信息包括: 主叫方的移动用户国际号码(Mobile Station ISDN , MSISDN ), 或, 相关业务类型指示, 如短消息业务( Short Message Service, SMS ), 位置业务( Location Service, LCS ), 以及未结构化补充业务 数据 ( Unstructured Supplementary Service Data, USSD )等。 另夕卜, 为了便于 MSC收到 MT业务响应时, MSC确定该响应消息对应的 MT业务, 因此, 所述 MT业务相关消息还可以包括: MT业务标识 , 所述 MT业务标识可以由 MSC分 配或利用已有标识(如呼叫编号等)。
由于 MSC发送给 MME的第一寻呼消息携带了 MT业务相关信息 , 则 MME 向 UE发送的寻呼消息或 MT业务指示消息中也可以进一步携带所述 MT业务相 关信息, 此时, UE按照用户预先设置, 根据收到的 MT业务相关信息, 提示用 户有 MT业务到来, 比如, UE可以将主叫方的 MSISDN号显示给用户, 也可以 将业务类型提示给用户。
在前文已述的方法中, 用户选择结果有两种, 即接受或者拒绝, 但在有些 情况下用户希望等待一段时间再处理该 MT业务, 因此要求暂时保持所述 MT 业务, 所以, 本发明第二实施例还提供了一种 CS fallback处理方法, 所述方 法在图 1所示方法的^ 5出上进一步包括:
若用户选择结果为保持所述 MT业务, 则 MME向 MSC发送 MT业务保 持消息;
并且, 为了使得所述 MT业务还可以恢复,在所述方法中还可以进一步包 括:
若 UE请求恢复已保持的 MT业务, 所述 MME通知 MSC恢复所述 MT 业务; 所述 MSC判断是否能恢复所述 MT业务, 如果能, 则通过 MME通知 UE转到 2G/3G网络, UE完成所述 MT业务, 或者, MME根据配置的运营商 策略, 触发 eNodeB将 UE切换到 2G/3G网络后在完成所述的 MT业务, 如果 MSC不能恢复所述 MT业务, 则恢复流程结束。
请参见图 4,为本发明第二实施例提供的 CS fallback处理方法的具体信令 流程图, 该信令流程允许用户选择保持 MT业务, 所述流程包括:
步骤 401 : MSC接收 MT业务请求后, 向 MME发送第一寻呼消息; 为了避免 MT业务保持时间过长, 占用系统资源,在所述方法中还可以进 一步包括: 预置呼叫保持定时器时长的步骤, 并且, 所述第一寻呼消息进一步 携带所述呼叫保持定时器时长;
步骤 402: MME查询所述 IMSI对应的 UE的状态 ,若 UE处于空闲状态 , 则 MME向 eNodeB发送第四寻呼消息,若 UE处于激活状态,则进入步骤 405; 步骤 403: eNodeB在其管辖的小区内广播所述第四寻呼消息; 步骤 404: UE收到所述第四寻呼消息后, 向 MME返回服务请求消息; 步骤 405: MME向 UE发送 MT业务指示消息 ,通知 UE有 MT业务到来; 其中, 所述 ME业务指示消息中可以携带所述 MT业务相关信息和 /或呼 叫保持定时器时长, 亦可不携带, 并不影响本发明实施例的实现。
步骤 406: UE收到所述 MT业务指示消息后, 提示用户有 MT业务到来; 在具体实现时, 若所述 MT业务指示消息携带了所述 MT业务相关信息, 则 UE按照用户预先设置, 根据收到的 MT业务相关信息, 提示用户有 MT业务到 来, 比如, UE可以将主叫方的 MSISDN号显示给用户, 也可以将业务类型提示 给用户。具体的提示方式可以采用响铃或震动或响铃并震动的方式,也可以采 用文本提示的方式等。
在用户对所述 MT业务进行选择后 , UE执行步骤 407。
步骤 407: UE向 MME发送 MT业务响应;
其中,所述 MT业务响应中可以携带用户的选择结果 (接受、拒绝或保持 ), 也可以不携带选择结果,此时, MME可以根据默认设置判断用户的选择结果, 一种常见的情况是: 如果所述 MT业务响应没有携带选择结果, 则 MME可以 默认用户接受所述业务。
若用户选择了 "保持" 该业务, 则 UE根据所述呼叫保持定时器时长, 启 动相应的定时器。
步骤 408: MME获取 MT业务响应中携带的选择结果, 若用户选择结果 是保持所述 MT业务, 则 MME向 MSC发送 MT业务保持消息, 若用户选择 的结果是拒绝或者接受所述 MT业务,后续处理过程与本发明第一实施例提供 相应处理流程相同, 请参见前文相关部分, 此处不再赘述。
步骤 409: 据预置的呼叫保持定时器时长, 启动相关定时器。 其中, 在本发明其他实施例中, MME在收到所述第一寻呼消息后, 亦可 不查询 UE状态, 此时, MME默认 UE均处于空闲状态, 然后, MME通过向 UE发送第四寻呼消息及 MT业务指示消息 , 通知处于激活状态或空闲状态的 UE有 MT业务到来。
以上为本发明第二实施例提供 CS fallback方法的具体信令流程,步骤 402〜 步骤 405可以用于通知处于空闲状态或者激活状态的 UE有 MT业务到来的过 程。在本发明其他实施例中,还可以采用图 5所示的信令流程通知处于激活状 态或者空闲状态的 UE有 MT业务到来, 所述信令流程包括:
步骤 501 : MME在收到 MSC发送的第一寻呼消息后, 向 eNodeB发送第 五寻呼消息, 所述第五寻呼消息至少携带 MT业务指示;
为了避免 MT业务保持时间过长, 占用系统资源, 以及, 方便用户进行 MT业务的选择, 在所述 MT业务请求消息中还可以进一步携带预置的呼叫保 持定时器时长和 /或 MT业务相关信息。
步骤 502: eNodeB在其管辖的小区内广播所述第五寻呼消息;
步骤 503: UE收到所述第五寻呼消息后, 提示用户有 MT业务到来。 以上为本发明实施例提供的 CS fallback处理方法, 及其具体实现过程。 对于用户保持的 MT业务,如果用户选择进行所述 MT业务, 则需要恢复 所述 MT业务, 当用户请求恢复 MT业务时, 若 UE在保持所述 MT业务时启 动了定时器, 则 UE需要查询所述定时器是否已超过呼叫保持定时长, 如果已 超过, 则恢复流程结束, 如果未超过, 则执行恢复流程, 针对前文已述的 MT 业务恢复过程 ,本发明实施例提供了一种恢复 MT业务的信令流程 ,请参见图 6, 包括:
步骤 601: 若 UE当前处于空闲状态, 则 UE向 MME发送服务请求消息, 当 UE从空闲状态转为激活态后, 执行步骤 602; 若 UE处于激活状态, 则直 接执行步骤 602;
步骤 602: UE向 MME发送第一 MT业务激活请求消息, 请求恢复已保 持的 MT业务;
其中, 所述 MT业务激活请求消息中可以携带需要激活的 MT业务标识, 以便 MME确定需要激活的 MT业务, 在某些场景下(如该 UE只有一个保持 的业务), 亦可不携带 MT业务标识, 并不影响本发明实施例的实现。
步骤 603: MME向 MSC发送第二 MT业务激活请求消息;
步骤 604: MSC接收到所述第二 MT业务激活请求消息后, MSC根据所 述 MT业务标识匹配已保持的 MT业务, 如果存在该业务, 则 MSC接受所述 激活请求, 并停止所述呼叫保持定时器, 分配相关资源, 向 MME发送第二 MT业务激活响应消息, 其中, 所述第二 MT业务激活响应消息中携带所述操 作成功的原因值。 否则, MSC拒绝所述激活请求, MSC 向 MME发送第二 MT业务激活响应消息, 其中, 所述第二 MT业务激活响应消息中携带所述操 作失败的原因值。
此外, 如果 MSC中的呼叫保持定时器超时, 则 MSC终止保持该 MT业 务, 释放保留的资源, 停止所述定时器。
当然, 对于成功和失败的情况也可以采用不同的响应消息发送给 MME, 并且, 响应消息中也可以携带 MT业务标识, 以便 UE确定需要响应的 MT业 务。
步骤 605: 当 MME接收到第二 MT业务激活响应消息后 , MME可以向
UE返回第一 MT业务激活响应消息;
其中 ,所述的第一 MT业务激活响应消息中可以携带第二 MT业务激活响应 消息中携带的 MT业务标识, 并且, MME也可以不发送第一 MT业务激活响应 消息, 并不影响本发明实施例的实现;
步骤 606: MME向 eNodeB发送 PS业务切换请求消息;
其中,在具体实现时, MME亦可根据网络配置的运营商策略, 不切换 UE 当前的 PS业务, 因此, MME不需要向 eNodeB发送 PS业务切换请求, 后续 eNodeB也不需要执行 PS切换流程。
步骤 607: eNodeB收到所述 PS业务切换请求消息后, 发起 PS业务切换 流程, 并将 UE切换到 2G/3G网络;
步骤 608: UE切换到 2G/3G网络后, 向 MSC发送第一寻呼响应, 完成 MT业务处理。
以上介绍了本发明实施例提供的 CS fallback处理方法, 在 CS fallback场 景下,对于短消息等 MT业务也可以考虑直接利用 UE在 EPS网络内的信令将 业务发送给 UE,而不需要将 UE切换到 2G/3G网络后再进行短信业务, 比如, 可以在前文所述的第一寻呼消息中进一步携带短消息内容, 然后, 通过 EPS 网络将所述短消息发送给 UE, UE在收到短消息后完成相关处理。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分步骤 是可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可 读存储介质中, 所述程序在执行时, 包括如下步骤:
移动管理实体接收移动交换中心发送的终呼业务指示;
所述移动管理实体将所述终呼业务指示发送给用户设备;
所述移动管理实体接收所述用户设备返回的终呼业务响应,根据所述终呼 业务响应进行后续操作。
上述提到的存储介质可以是只读存储器, 磁盘或光盘等。
请参见图 7, 为本发明实施例提供的 CS fallback系统, 包括: MME701 ,
MSC702, eNodeB703 , 其中,
本发明实施例提供的, MSC702具体包括: 业务指示发送单元 7021; 所述业务指示发送单元 7021 , 用于在接收到 MT业务指示后 , 将 MT业 务指示发送给 MME701;
本发明实施例提供的 MME701包括:
寻呼消息接收单元 7011 , 用于接收 MSC702发送的 MT业务指示; 终呼业务通知单元 7012, 用于将所述 MT业务指示发送给 UE;
响应接收单元 7013, 用于接收 UE704返回的 MT业务响应;
响应处理单元 7014, 用于根据所述 MT业务响应, 进行后续操作。
在具体实现时, 所述 MT业务响应携带用户选择结果, 则所述响应处理单 元具体 7014包括:
第一响应消息处理单元, 用于若所述用户选择结果为拒绝所述 MT业务, 则向所述 MSC702返回 MT业务拒绝消息;
第二响应处理单元, 用于若所述用户选择结果为保持所述 MT业务, 则向 所述 MSC702返回 MT业务保持消息;
第三响应处理单元, 用于若所述用户选择结果为接受所述 MT业务,或所 述用户选择结果为空, 则触发所述 UE704转到 2G/3G网络。
为了使用户能够恢复已保持的 MT业务, 所述 MME701进一步包括: 激活请求接收单元, 用于接收所述 UE704发送的请求恢复已保持 MT业 务的第一 MT业务激活请求消息;
激活请求发送单元, 用于向 MSC702发送第二 MT业务激活请求消息; 激活响应接收单元,用于接收所述 MSC702返回的第二 MT业务激活响应 消息, 并通知所述 UE704转到 2G/3G网络;
所述 MSC702进一步包括:
激活请求接收单元,用于接收 ΜΜΕ发送来的所述第二 ΜΤ业务激活请求 消息;
激活响应发送单元, 用于在激活请求接收单元接收到所述请求消息后,返 回第二 ΜΤ业务激活响应消息。。
由于有些 UE在 EPS网络中处于空闲状态, 为了能够激活这些 UE, 终呼 业务通知单元 7012具体包括:
用户设备激活单元, 用于通过 eNodeB703激活所述 UE704;
状态查询单元, 用于查询 UE704的状态, 若所述 UE704处于激活状态, 则触发所述发送单元, 若所述 UE704处于空闲状态, 则触发所述用户设备激 活单元;
发送单元, 用于在用户设备处于激活状态时, 向所述用户设备发送终呼业 务指示。
在具体实现时, 所述用户设备激活单元可以有两种实现方式:
第一种实现方式中, 该单元具体包括:
寻呼消息发送单元, 用于向 eNodeB703发送第二寻呼消息;
服务请求接收单元, 用于在接收到所述 UE704返回的服务请求消息后, 触发所述 MT业务通知单元 7012。
第二种实现方式中, 所述用户设备激活单元是激活及通知单元, 所述激活及通知单元, 用于向 eNodeB703发送携带 MT业务指示的第三 寻呼消息, 该激活及通知单元通过向 eNodeB703发送一个第三寻呼消息既实 现了激活 UE, 而且还实现了发送 MT业务指示给 UE。
本发明实施例还提供了一种 MME, 在 CS fallback场景下, 对于短消息等 MT业务的处理方法。 该 MME可以包括:
接收单元, 用于接收移动交换中心发送的短消息;
状态判断单元, 用于判断所述用户设备处于激活状态还是空闲状态; 发送子单元, 用于在所述状态判断单元判断所述用户设备处于激活状态 时 , 向所述用户设备发送所述接收单元接收到的所述短消息; 激活发送单元,用于在所述状态判断单元判断所述用户设备处于空闲状态 时, 激活所述用户设备,发送所述接收单元接收到的所述短消息给激活后的用 户设备;
短消息响应接收单元, 用于接收所述用户设备发送的短消息响应。
其中, 上述激活发送单元可以包括:
寻呼发送单元, 用于向演进基站发送第二寻呼消息;
返回消息接收单元, 用于接收用户设备返回的服务请求消息;
短消息发送单元,用于根据所述返回消息接收单元得到的所述服务请求消 息发送短消息至所述用户设备;
或者, 所述激活发送单元可以包括:
携带寻呼发送单元, 用于向演进基站发送携带所述短消息的第三寻呼消 息。
请参见图 7, 本发明实施例还提供了一种 UE704, 包括:
通知接收单元 7041 , 用于接收 MME701发送的终呼业务指示;
提示单元 7042, 用于在所述通知接收单元 8041接收到终呼业务指示后, 提示用户有终呼业务到来;
响应发送单元 7043 , 用于根据用户对所述 MT业务的选择, 向所述 MME 返回 MT业务响应。
为了使已保持的 MT业务可以恢复, 上述 UE还可以进一步包括: 激活请求发送单元,用于向所述移动管理实体发送第一终呼业务激活请求 消息, 请求恢复已保持的 MT业务。
进一步, 上述 UE中还可以进一步包括: 终呼业务处理单元, 用于对终呼 业务进行处理。
以上对本发明所提供的一种演进分组网络中电路域业务的处理方法、系统 及相关设备进行了详细介绍,对于本领域的一般技术人员,依据本发明实施例 的思想, 在具体实施方式及应用范围上均会有改变之处, 综上所述, 本说明书 内容不应理解为对本发明的限制。

Claims

权 利 要 求
1、 一种演进分组网络中电路域业务的处理方法, 其特征在于, 包括: 移动管理实体接收移动交换中心发送的终呼业务指示;
所述移动管理实体将所述终呼业务指示发送给用户设备;
所述移动管理实体接收所述用户设备返回的终呼业务响应,根据所述终呼 业务响应进行后续操作。
2、 如权利要求 1所述的方法, 其特征在于, 所述终呼业务响应携带用户 选择结果, 则根据所述终呼业务响应进行后续操作, 具体为:
若所述用户选择结果为拒绝所述终呼业务,
所述移动管理实体向所述移动交换中心返回终呼业务拒绝消息; 若所述用户选择结果为保持所述终呼业务,
所述移动管理实体向所述移动交换中心返回终呼业务保持消息; 若所述用户选择结果为接受所述终呼业务,
所述移动管理实体触发所述用户设备转到 2G/3G网络;
若所述用户选择结果为空,所述移动管理实体根据默认设置判断用户的选 择结果。
3、 如权利要求 2所述的方法, 其特征在于, 在所述移动管理实体向所述 移动交换中心返回终呼业务保持消息后 , 若用户请求恢复已保持的终呼业务, 则所述方法进一步包括:
所述移动管理实体接收所述用户设备发送的请求恢复已保持终呼业务的 第一终呼业务激活请求消息;
所述移动管理实体向移动交换中心发送第二终呼业务激活请求消息; 所述移动交换中心向所述移动管理实体返回第二终呼业务激活响应消息, 通知所述用户设备转到 2G/3G网络。
4、 如权利要求 3所述的方法, 其特征在于, 所述终呼业务激活请求消息 携带终呼业务标识,则所述移动交换中心向所述移动管理实体返回第二终呼业 务激活响应消息, 具体包括:
所述移动交换中心根据所述终呼业务标识匹配已保持的终呼业务,如果存 在所述终呼业务, 则所述移动交换中心接受所述激活请求, 并向所述移动管理 实体发送第二终呼业务激活响应消息。
5、 如权利要求 1至 4任一项所述的方法, 其特征在于, 所述终呼业务指 示包括终呼业务相关信息。
6、 如权利要求 1至 4任一项所述的方法, 其特征在于, 所述方法进一步 包括:
所述用户设备接收所述终呼业务指示,提示用户有终呼业务到来, 并根据 用户的选择返回终呼业务响应至所述移动管理实体。
7、 如权利要求 1至 4任一项所述的方法, 其特征在于, 所述移动管理实 体将所述终呼业务指示发送给用户设备具体包括:
所述移动管理实体查询用户设备的状态, 若所述用户设备处于激活状态, 则所述移动管理实体发送终呼业务指示至所述用户设备;若所述用户设备处于 空闲状态, 则所述移动管理实体通过演进基站激活所述用户设备,发送终呼业 务指示给用户设备。
8、 如权利要求 7所述的方法, 其特征在于, 所述移动管理实体通过演进 基站激活所述用户设备, 发送终呼业务指示给用户设备具体包括:
所述移动管理实体向演进基站发送第二寻呼消息;
所述演进基站向其管辖小区内的用户设备广播所述第二寻呼消息所述移 动管理实体接收所述用户设备返回的服务请求消息;
所述移动管理实体发送终呼业务指示消息至所述用户设备。
9、 如权利要求 7所述的方法, 其特征在于, 所述移动管理实体通过演进 基站激活所述用户设备, 发送终呼业务指示给用户设备具体包括:
所述移动管理实体向演进基站发送携带所述终呼业务指示的第三寻呼消 所述演进基站向其管辖小区内的用户设备广播所述第三寻呼消息。
10、 一种演进分组网络中电路域业务的处理方法, 其特征在于, 包括: 移动管理实体接收移动交换中心发送的短消息;
若所述用户设备处于激活状态,则所述移动管理实体发送短消息至所述用 户设备; 若所述用户设备处于空闲状态, 则所述移动管理实体激活所述用户设 备, 发送短消息给用户设备; 所述移动管理实体接收所述用户设备发送的短消息响应。
11、 如权利要求 10所述的方法, 其特征在于, 所述移动管理实体激活所 述用户设备, 发送短消息给用户设备具体包括:
所述移动管理实体向演进基站发送第二寻呼消息;所述演进基站向其管辖 小区内的用户设备广播所述第二寻呼消息;
所述移动管理实体接收所述用户设备返回的服务请求消息;
所述移动管理实体根据所述服务请求消息发送短消息至所述用户设备。
12、 如权利要求 10所述的方法, 其特征在于, 所述移动管理实体激活所 述用户设备, 发送短消息信息给用户设备具体包括:
所述移动管理实体向演进基站发送携带所述短消息的第三寻呼消息; 所述演进基站向其管辖小区内的用户设备广播所述第三寻呼消息。
13、 一种移动管理实体, 其特征在于, 包括:
寻呼消息接收单元 , 用于接收移动交换中心发送的终呼业务指示; 终呼业务通知单元, 用于将所述终呼业务指示发送给用户设备; 响应接收单元, 用于接收所述用户设备返回的终呼业务响应;
响应处理单元, 用于根据所述终呼业务响应, 进行后续操作。
14、 如权利要求 13所述的移动管理实体, 其特征在于, 所述终呼业务响 应携带用户选择结果, 则所述响应处理单元具体包括:
第一响应消息处理单元, 用于若所述用户选择结果为拒绝所述终呼业务, 则向所述移动交换中心返回终呼业务拒绝消息; 和 /或
第二响应处理单元, 用于若所述用户选择结果为保持所述终呼业务, 则向 所述移动交换中心返回终呼业务保持消息; 和 /或
第三响应处理单元, 用于若所述用户选择结果为接受所述终呼业务,或所 述用户选择结果为空, 则触发所述用户设备转到 2G/3G网络。
15、 如权利要求 14所述的移动管理实体, 其特征在于, 在所述第二响应 处理单元向移动交换中心返回终呼业务保持消息后,若用户请求恢复已保持的 终呼业务, 则所述移动管理实体进一步包括:
激活请求接收单元,用于接收所述用户设备发送的请求恢复已保持终呼业 务的第一终呼业务激活请求消息; 激活请求发送单元, 用于向移动交换中心发送第二终呼业务激活请求消 激活响应接收单元,用于接收所述移动交换中心返回的第二终呼业务激活 响应消息, 并通知所述用户设备转到 2G/3G网络。
16、 如权利要求 13至 15任一项所述的移动管理实体, 其特征在于, 所述 终呼业务通知单元具体包括:
用户设备激活单元, 用于通过演进基站激活所述用户设备;
状态查询单元,用于查询用户设备的状态,若所述用户设备处于激活状态, 则触发所述发送单元, 若所述用户设备处于空闲状态, 则触发所述用户设备激 活单元;
发送单元, 用于在用户设备处于激活状态时, 向所述用户设备发送终呼业 务指示。
17、 如权利要求 16所述的移动管理实体, 其特征在于, 所述用户设备激 活单元具体包括:
寻呼消息发送单元, 用于向演进基站发送第二寻呼消息;
服务请求接收单元, 用于在接收到所述用户设备返回的服务请求消息后, 触发所述终呼业务通知单元。
18、 如权利要求 17所述的移动管理实体, 其特征在于, 所述用户设备激 活单元是激活及通知单元;
所述激活及通知单元,用于向演进基站发送携带终呼业务指示的第三寻呼 消息。
19、 一种移动管理实体, 其特征在于, 包括:
接收单元, 用于接收移动交换中心发送的短消息;
状态判断单元, 用于判断所述用户设备处于激活状态还是空闲状态; 发送子单元, 用于在所述状态判断单元判断所述用户设备处于激活状态 时 , 向所述用户设备发送所述接收单元接收到的所述短消息;
激活发送单元,用于在所述状态判断单元判断所述用户设备处于空闲状态 时, 激活所述用户设备,发送所述接收单元接收到的所述短消息给激活后的用 户设备; 短消息响应接收单元, 用于接收所述用户设备发送的短消息响应。
20、 如权利要求 19所述的移动管理实体, 其特征在于, 所述激活发送单 元包括:
寻呼发送单元, 用于向演进基站发送第二寻呼消息;
返回消息接收单元, 用于接收用户设备返回的服务请求消息;
短消息发送单元,用于根据所述返回消息接收单元得到的所述服务请求消 息发送短消息至所述用户设备;
或者, 所述激活发送单元包括:
携带寻呼发送单元, 用于向演进基站发送携带所述短消息的第三寻呼消 息。
21、 一种用户设备, 其特征在于, 包括:
通知接收单元, 用于接收移动管理实体发送的终呼业务指示;
提示单元, 用于在所述通知接收单元接收到终呼业务指示后,提示用户有 终呼业务到来;
响应发送单元, 用于根据用户对所述终呼业务的选择, 向所述移动管理实 体返回终呼业务响应。
22、 如权利要求 21所述的用户设备, 其特征在于, 进一步包括: 激活请求发送单元,用于向所述移动管理实体发送请求恢复已保持终呼业 务的第一终呼业务激活请求消息。
23、 如权利要求 21或 22所述的用户设备, 其特征在于, 进一步包括: 终呼业务处理单元, 用于对终呼业务进行处理。
24、 一种电路域业务返回传统网络的处理系统, 其特征在于, 包括: 移动 交换中心, 移动管理实体;
所述移动交换中心具体包括: 业务指示发送单元;
所述业务指示发送单元, 用于在接收到终呼业务指示后,将终呼业务指示 发送给移动管理实体;
所述移动管理实体具体包括:
寻呼消息接收单元, 用于接收所述移动交换中心发送的终呼业务指示; 终呼业务通知单元, 用于将所述终呼业务指示发送给用户设备; 响应接收单元 , 用于接收所述用户设备返回的终呼业务响应; 响应处理单元, 用于根据所述终呼业务响应, 进行后续操作。
25、 如权利要求 24所述的系统, 其特征在于, 所述终呼业务响应携带用 户选择结果, 则所述响应处理单元具体包括:
第一响应消息处理单元, 用于若所述用户选择结果为拒绝所述终呼业务, 则向所述移动交换中心返回终呼业务拒绝消息;
第二响应处理单元, 用于若所述用户选择结果为保持所述终呼业务, 则向 所述移动交换中心返回终呼业务保持消息;
第三响应处理单元, 用于若所述用户选择结果为接受所述终呼业务,或所 述用户选择结果为空, 则触发所述用户设备转到 2G/3G网络。
26、 如权利要求 25所述的系统, 其特征在于, 在所述第二响应处理单元 向移动交换中心返回终呼业务保持消息后 , 若用户请求恢复已保持的终呼业 务, 则所述移动管理实体进一步包括:
激活请求接收单元,用于接收所述用户设备发送的请求恢复已保持终呼业 务的第一终呼业务激活请求消息;
激活请求发送单元, 用于向移动交换中心发送第二终呼业务激活请求消 激活响应接收单元,用于接收所述移动交换中心返回的第二终呼业务激活 响应消息, 并通知所述用户设备转到 2G/3G网络。
27、 如权利要求 24所述的系统, 其特征在于, 所述移动交换中心进一步 包括:
激活请求接收单元,用于接收移动管理实体发送来的所述第二终呼业务激 活请求消息;
激活响应发送单元, 用于在激活请求接收单元接收到所述请求消息后,返 回第二终呼业务激活响应消息。
28、 如权利要求 24至 27任一项所述的系统, 其特征在于, 所述系统进一 步包括演进基站, 所述移动管理实体进一步包括:
用户设备激活单元, 用于通过演进基站激活所述用户设备;
状态查询单元 ,用于查询用户设备的状态 ,若所述用户设备处于激活状态 , 则触发所述终呼业务通知单元, 若所述用户设备处于空闲状态, 则触发所述用 户设备激活单元。
29、 如权利要求 28所述的系统, 其特征在于, 所述用户设备激活单元具 体包括:
寻呼消息发送单元, 用于向演进基站发送第二寻呼消息;
服务请求接收单元, 用于在接收到所述用户设备返回的服务请求消息后, 触发所述终呼业务通知单元。
30、 如权利要求 28所述的系统, 其特征在于, 所述用户设备激活单元是 激活及通知单元;
所述激活及通知单元,用于向演进基站发送携带终呼业务指示的第三寻呼 消息。
PCT/CN2008/073200 2008-01-16 2008-11-26 Procédé, système et dispositif associé pour traiter un service du domaine à commutation de circuits dans un réseau par paquets évolué WO2009089704A1 (fr)

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US14/859,196 US9894563B2 (en) 2008-01-16 2015-09-18 Processing circuit switched services in an evolved packet network
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