WO2013044883A1 - 一种实现告警事件处理的方法、装置和系统 - Google Patents
一种实现告警事件处理的方法、装置和系统 Download PDFInfo
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- WO2013044883A1 WO2013044883A1 PCT/CN2012/082569 CN2012082569W WO2013044883A1 WO 2013044883 A1 WO2013044883 A1 WO 2013044883A1 CN 2012082569 W CN2012082569 W CN 2012082569W WO 2013044883 A1 WO2013044883 A1 WO 2013044883A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/90—Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/04—Wireless resource allocation
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/50—Connection management for emergency connections
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W28/00—Network traffic management; Network resource management
- H04W28/02—Traffic management, e.g. flow control or congestion control
- H04W28/06—Optimizing the usage of the radio link, e.g. header compression, information sizing, discarding information
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/20—Manipulation of established connections
- H04W76/27—Transitions between radio resource control [RRC] states
Definitions
- the present application claims to be submitted to the Chinese Patent Office on September 30, 2011, and the application number is 201110297538.X, and the invention name is "a method, device and system for implementing alarm event processing" The priority of the Chinese Patent Application, the entire contents of which is incorporated herein by reference.
- the present invention relates to the field of communications technologies, and in particular, to a method, apparatus, and system for implementing alarm event processing.
- embodiments of the present invention provide a method, apparatus, and system for implementing alarm event processing, which can shorten communication delay and reduce system load.
- the technical solution provided by the embodiment of the present invention is as follows:
- a method for processing an alarm event including: the first base station eNB acquires an alarm event EM information of the user terminal UE; the first eNB sends the at least one eNB that needs to perform the EM notification, including the EM notification of EM information, such that the at least one eNB sends the EM notification to a UE under the at least one eNB; the first eNB sends a location including the EM information to a UE under the first eNB EM notification.
- a method for processing an alarm event including: at least one base station eNB receives an EM notification including an alarm event EM information, where the EM information is obtained by the first eNB from the EM information reported by the user terminal UE The at least one eNB sends the EM notification including the EM event to the UE belonging to the at least one eNB.
- a method for processing an alarm event including: a mobility management entity receiving an EM notification including EM information; and receiving, after receiving the EM notification including the EM information, the fixed E transmitting the location to the at least one eNB Said EM notification containing EM information.
- an apparatus for processing an alarm event including: an obtaining module, configured to acquire an alarm event EM information reported by a user terminal UE, and a sending module, configured to send the acquiring to at least one eNB that needs to perform an EM notification The EM notification of the EM information that is acquired by the module; the sending module is configured to send the EM notification that includes the EM information to the UE under the first eNB.
- an apparatus for processing an alarm event including: a receiving module, configured to receive an EM notification including an alarm event EM information, where the EM information is used by the first eNB to report the EM information from the user terminal UE And a sending module, configured to send, by the UE that belongs to the at least one eNB, an EM notification that is received by the receiving module and includes an EM event.
- an apparatus for processing an alarm event including: a receiving module, configured to receive an EM notification including EM information; and a sending module, configured to: when the receiving module receives the EM information, After the EM notification, the EM notification including the EM information is sent to at least one eNB.
- the EM event reported by the UE is notified to the eNB to which the UE that needs to perform the EM event notification belongs, and then each eNB will The EM event is notified to the corresponding UE, and the nodes experienced in the EM notification process are reduced relative to the existing call process, thereby shortening the signaling interaction process of the alarm event processing in the emergency situation, thereby greatly shortening the cellular network communication.
- the communication delay of the system and the system load is greatly reduced.
- FIG. 1 is a schematic flowchart of a method for implementing alarm event processing according to an embodiment of the present invention
- FIG. 2 is a schematic flowchart of another method for implementing alarm event processing by using solid E as a forwarding point according to an embodiment of the present invention
- FIG. 3 is a schematic flowchart of another method for implementing alarm event processing by using an eNB as a forwarding point according to an embodiment of the present invention
- FIG. 4 is a schematic flow chart of another method for implementing alarm event processing according to an embodiment of the present invention
- FIG. 5 is a schematic structural diagram of an alarm event processing device according to an embodiment of the present invention
- FIG. 6 is another schematic diagram of an alarm event processing device according to an embodiment of the present invention
- FIG. 7 is a schematic structural diagram of another embodiment of an alarm event processing apparatus according to an embodiment of the present invention.
- DSRC Dedicated Short Range Communications
- the access procedure and the paging procedure need to take a long time, and there are many nodes to go through from UE1 to UE2, that is, the whole
- the path starts from UE1 and often needs to go through an eNB (evolved NodeB, base station), S-GW (Service Gateway, Service Gateway), P-GW (Packet Data Gateway), MME (mobility management entity, mobility management).
- eNB evolved NodeB, base station
- S-GW Service Gateway, Service Gateway
- P-GW Packet Data Gateway
- MME mobility management entity, mobility management
- the entire path delay can be up to nearly 3 seconds; thus, when the IoT device performs periodic reporting on a large scale, there is still System overload due to excessive signaling interaction.
- the embodiment of the present invention provides a method for processing an existing alarm event, and the details are as follows:
- the embodiment of the present invention provides a method for processing an alarm event, which can be applied to a Universal Mobile Telecommunication System (UTMS).
- UTMS Universal Mobile Telecommunication System
- the LTE system is used as an example.
- the method includes:
- Step 210 The first eNB (base station) acquires EM (emergency message) information reported by the UE;
- the UE when the UE in which the EM event occurs is in the connected state, the UE directly sends the EM event information to the first eNB to which it belongs. Specifically, the UE may send the NAS carrying the EM information. (non-access stratum) signaling, service request (service request) message, Or sending the EM information to the first eNB to which it belongs, or by sending an EM message to the first eNB, and informing the eNB of the EM event.
- This embodiment is not specifically limited;
- connection establishment process may use an existing UE access method, for example, it may include the following steps:
- the UE After detecting the EM event, the UE sends an RRC Connection Reques t message to the first eNB to which the UE belongs;
- the UE After receiving the RRC Connection Setup message, the UE feeds back, to the first eNB, an RRC Connection Setup Complete message; and the message carries the NAS that includes the EM event information. (non-access stratum) signaling, service reques t (service request) message, or at tach reques t (attach) message, etc.; at the same time, the EM event can also be directly carried in the RRC Connection Setup Complete message It is to be noted that, in order to make the delivery of the EM event information more accurate, the method of this embodiment may further include: presetting a dedicated preamble for the EM event in the first eNB.
- preamble (preamble), and inform the UE in the cell by the cell broadcast, so that the UE with the EM event reporting capability stores the dedicated preamble of the EM event, and enables the UE to use the dedicated when the EM event is detected.
- the preamble reports the EM event information, and the first eNB obtains the EM information reported by the UE by using the dedicated preamble;
- the EM event information may also include, but is not limited to: an EM event indication message, EM event point information, vehicle location information, driving direction information, and the like.
- Step 220 The first eNB sends an EM notification that includes the EM information to at least one eNB that needs to perform an EM notification, so that the at least one eNB sends the EM notification to a UE under the at least one eNB.
- the first eNB may perform the notification as a relay forwarding, or may use the E as a relay to perform the forwarding notification, which is specifically determined by the actual application, and is not specifically limited herein; Do not specify in two forms of forwarding:
- the first eNB performs the forwarding notification as the relay. After the first eNB receives the EM information, it first determines whether the EM information needs to be notified to the at least one eNB, and if necessary, to the at least one The eNB sends an EM notification message; after receiving the EM notification, the at least one eNB determines whether it needs to perform EM notification to other eNBs again, and if necessary, sends an EM notification message to other eNBs; wherein, it is worth noting that When the first eNB determines whether the EM information needs to be notified to the at least one eNB, any one of the following two methods may be used, but is not limited thereto: First, the first eNB is based on The location information of the UE that needs to perform the EM notification is determined.
- the location information of the UE is the latitude and longitude information of the UE
- the first eNB may be based on the latitude and longitude information of the UE and the network planning and deployment of the local eNB. Determining whether it is necessary to forward the EM notification to the eNB to which the UE belongs. Second, pre-configuring the neighboring area forwarding table of the first eNB, where the forwarding table records the need And performing, by the first eNB, the at least one eNB information; if the first eNB receives the EM information, if the at least one eNB is detected in the neighboring forwarding table, the forwarding table may be utilized Said at least one eNB transmitting an EM notification;
- the EM notification including the EM information is sent to at least one eNB that needs to perform the EM notification, and the specific notification manner may be any one of the following manners, but is not limited thereto:
- the at least one eNB that needs to perform the EM notification is obtained according to the EM information.
- the UE location information that needs to be notified by the EM event is obtained, and the location information is used to send a notification to the eNB to which the UE belongs.
- the The location information of the UE is the latitude and longitude information of the UE, and the latitude and longitude information of the UE and the overall network planning deployment of the eNB are obtained, and the eNB can determine Whether the EM notification needs to be sent to the eNB to which the UE belongs may be specifically referred to in the manner of determining the eNB by using the location information of the UE, and is not described herein again.
- the EM event forwarding table is pre-configured, and the forwarding table is recorded. There is at least one eNB information that needs to be notified by the EM, and then the EM notification message is sent to the at least one eNB by using the forwarding table. It is noted that, after the solid E acquires the EM event information, if the UE has If the authentication of the EM information capability is performed, the EM notification message is sent to the at least one eNB that needs to perform the EM notification. If the UE does not perform the authentication operation, the authentication operation of the UE needs to be performed at this time.
- the specific authentication process is similar to the existing mode, and is not described herein again. In this embodiment, the authentication operation may also be performed in the first eNB to which the UE in which the EM belongs belongs. The specific authentication process can also be the same as the existing one, and will not be repeated here.
- Step 230 The first eNB sends the EM notification including the EM information to a UE under the first eNB.
- the first eNB may send the EM notification that includes the EM information to the UE by using any one of the following manners, but is not limited thereto:
- the first eNB After the first eNB receives the EM information, if the information is long EM information including location information and/or motion direction information of the UE and/or EM event specific content information, the first An eNB generates an EM broadcast message including the long EM information and sends the eNB, and the first eNB sends a paging message that carries the EM broadcast message indication to the UE to which the first eNB belongs.
- the UE The location information is the latitude and longitude information of the UE;
- the motion direction information includes the displacement direction, the displacement angle, and the like of the UE, for example, the UE moves in a direction of 30 degrees west to the west;
- the specific content of the EM event includes but not Limited to crashes, vehicle breakdowns, landslides, etc.;
- the first eNB After the first eNB receives the EM information, if the EM information is short EM information including EM event indication information, the first eNB directly sends a paging message that carries the EM information indication to The UE to which the first eNB belongs; wherein the EM event indication information is EM ind, and usually only lb it, of course, is not limited thereto;
- the first eNB uses the paging message to carry the EM scheduling information, and uses the PDSCH (Physical Downlink Shared Channel) and the PDCCH (Physical Downlink Control). Channels) transmitting the EM information to the UE;
- PDSCH Physical Downlink Shared Channel
- PDCCH Physical Downlink Control
- the first eNB After the first eNB receives the EM information, the first eNB carries the EM information by scheduling an EM-specific RNTI (Radio Network Temporary Identity) or by using the dedicated RNTI PDCCH to carry the EM information.
- the EM notification is sent to the UE to which the first eNB belongs. It should be noted that, in the foregoing embodiment, the manner in which the EM notification is sent is only described by using the first eNB as an example, and the other at least one eNB sends the EM notification to the UE. The delivery method is the same as this, and will not be repeated here.
- the eNB or the MME is used as the forwarding point, and the EM event reported by the UE is notified to the eNB to which the UE that needs to perform the EM event notification belongs, and then each eNB notifies the EM event.
- the corresponding UE is shortened, and the signaling interaction process of the alarm event processing in the emergency situation is shortened, thereby greatly shortening the communication delay of the cellular network communication system and greatly reducing the system load.
- the method of the first embodiment is described in detail below by taking the MME and the eNB as forwarding points as an example.
- the solid E is used as a forwarding point as an example.
- the method includes:
- the eNB1 configures the EM event-dedicated preamble, and informs the UE in the cell by using the cell broadcast, and the UE having the EM event capability receives the dedicated preamble and stores it;
- S302 UE1 detects an EM event, selects a dedicated preamble to send EM information to the eNB1 with a larger power, and the UE1 is in an idle state.
- S303 After detecting the reported information of the UE1, the eNB1 feeds back the TA to the UE1. Time advance) and SG (scheduling permission) message;
- S304 The UE1 feeds back the RRC Connection Reques t message to the eNB1 after receiving the TA and the SG.
- S306 After receiving the RRC Connection Setu message, the UE1 feeds back an RRC Connection Setup Complete message to the eNB1, where the message includes NAS signaling carrying EM information.
- S307 After receiving the NAS signaling that carries the EM information, the eNB1 forwards the NAS signaling to the solid E;
- the solid E After receiving the NAS signaling, the solid E performs the UE1 authentication process when the MME information is included in the NAS signaling, and calculates an eNB to which the UE that needs to perform the EM notification according to the EM information Sending an EM notification message to the eNB to which the UE that needs to perform the EM notification belongs, where the message carries the EM information;
- S310 If the EM notification message received by the eNB includes the incident point information of the EM, generate an EM broadcast message by using the accident point information of the EM, and then use the paging message to carry the EM information to the EM. The event is notified to the UE; if the EM notification message obtained by the eNB includes only the EM information, the EM information is directly reported to the UE by using the paging message carrying the EM information;
- S 311 The UE in the cell to which the eNB belongs receives the paging message carrying the EM information, and then reports the message to the application layer to complete the processing of the alarm event.
- the access process is not needed, that is, the method may not include the partial access process of S 303 to S 306, and only the UE1 directly sends the EM information.
- the NAS signaling may be performed to the eNB1, or the UE1 may directly send the EM information to the eNB1, and the processing procedure after the eNB1 receives the EM information is the same, and details are not described herein again.
- the process of establishing a connection between the UE1 and the eNB1 may also be implemented by using a dedicated preamble, and may be implemented by using an existing access operation; and, after the MME receives the NAS signaling, if it is determined The UE1 has performed an authentication operation for reporting the EM information capability, and the authentication operation at this time can be omitted, and the subsequent operations are directly performed.
- an eNB is used as a forwarding point as an example. As shown in FIG. 3, the method includes:
- the eNB1 configures the EM-dedicated preamb le and informs the UE in the cell by using the cell broadcast, and the UE having the EM reporting capability receives the dedicated preamb le and stores it;
- S402 UE1 detects that EM is generated, and selects a dedicated preamb le to send EM information to the eNB1 with a larger power, and the UE1 is in a connected state;
- the eNB1 After detecting the uplink information of the UE1, the eNB1 determines the location information based on the UE. Whether it is necessary to inform the other eNB of the EM information, and if necessary, send an EM notification message to the other eNB;
- S405 If the EM notification message received by the other eNB includes the accident point information of the EM, generate an EM broadcast message by using the accident point information of the EM, and then use the paging message to carry the EM information to the EM. The information is notified to the UE; if the EM notification message obtained by the eNB includes only the EM information, the EM information is directly reported to the UE by using the paging message carrying the EM information;
- Embodiment 4 The UE in the cell to which the eNB belongs receives the paging message carrying the EM information, and then reports to the application layer to complete the processing of the alarm event.
- the solution proposed in Embodiment 4 can be used to carry the EM information to the eNB1 in the UE1 access process. As shown in FIG. 4, the method includes:
- S501 The eNB1 configures the EM-dedicated preamb le, and informs the UE in the cell by the cell broadcast, and the UE with the EM reporting capability receives the dedicated preamb le and stores it;
- S502 After detecting the EM, the UE1 selects the dedicated preamb le to compare Sending EM information to the eNB1 with high power, and the UE1 is in an idle state;
- S503 After detecting the report information of the UE1, the eNB1 feeds back a TA (time advance amount) and an SG (scheduling grant) message to the UE1.
- TA time advance amount
- SG scheduling grant
- the UE1 sends an RRC Connection Reques message carrying the EM information to the eNB1 after receiving the TA and the SG.
- the eNB1 After detecting the uplink information of the UE1, the eNB1 determines, according to the location information of the UE1, whether to notify the other eNB of the EM information, and if necessary, sends an EM notification message to the other eNB;
- S506 The other eNB sends a response message to the eNB1 after receiving the EM notification message.
- S507 If the EM notification message received by the other eNB includes the EM point information, the EM event point information is used. Generating an EM broadcast message, and then using the paging message to carry the EM information to notify the UE of the EM information; if the EM notification message obtained by the eNB includes only EM information, directly using the paging message to carry the EM information EM information notification to UE;
- the UE in the cell to which the eNB belongs is reported to the application layer to complete the processing of the alarm event.
- the access procedure is not required, that is, the UE1 directly sends the NAS signaling carrying the EM information to the eNB1, or the UE1 directly sends the EM.
- the information is sent to the eNB1, and the processing procedure after the eNB1 receives the EM information is the same, and is not described here again.
- the fifth embodiment of the present invention further provides an apparatus for implementing alarm event processing. As shown in FIG.
- the apparatus 600 includes: an obtaining module 610, configured to acquire an alarm event EM information reported by the user terminal UE;
- the module 620 is configured to send, to the at least one eNB that needs to perform the EM notification, the EM notification that is acquired by the acquiring module 610 to include the EM information, where the sending module 620 is configured to send the information to the UE under the first eNB.
- the EM notification of the EM information is configured to acquire an alarm event EM information reported by the user terminal UE.
- the acquiring module 610 includes: (not shown in the figure): a first acquiring submodule, configured to directly acquire the EM information reported by the UE when the UE in which the EM is in the connected state; And a submodule, configured to acquire the EM information after establishing a radio resource control RRC connection with the UE when the UE in which the EM is in an idle state.
- the second obtaining sub-module is specifically configured to: obtain the EM information from an RRC connection setup complete message when the UE in which the EM is in an idle state; or connect from the RRC when the UE in which the EM is in an idle state Acquiring the EM information in the non-access stratum signaling in the setup completion message; or acquiring the EM information from the service request message in the RRC connection setup complete message when the UE in which the EM is in the idle state; or when occurs When the UE of the EM is in an idle state, the EM information is obtained from an attach message in an RRC connection setup complete message.
- the first acquiring sub-module is specifically configured to: obtain the EM information from a non-access stratum signaling, a service request message, or an attach message that carries the EM information sent by the UE.
- the apparatus 600 may further include (not shown): a setting module, configured to preset a dedicated preamble for the EM; the obtaining module is specifically configured to use the setting by using the setting module The dedicated preamble acquires the EM information of >3 ⁇ 4 on the UE.
- the apparatus 600 further includes (not shown in the figure): a determining module, configured to determine whether the EM information acquired by the acquiring module needs to be notified to the at least one eNB; And sending the EM notification to the at least one eNB according to a determination result of the determining module.
- a determining module configured to determine whether the EM information acquired by the acquiring module needs to be notified to the at least one eNB. And sending the EM notification to the at least one eNB according to a determination result of the determining module.
- the determining module is specifically configured to: determine, according to the location information of the UE, whether to send the EM notification to the at least one eNB; or, pre-configure a neighboring area forwarding table of the first eNB, where the forwarding table is configured And including the at least one eNB information that needs to perform EM notification, and when the at least one eNB is detected in the neighboring cell forwarding table, sending the EM notification to the at least one eNB.
- the sending module is further configured to: after the acquiring module acquires the EM information, notify the mobility management entity to the EM information, so that the MN receives the IMS information After the EM notification of the EM information, the EM notification including the EM information is sent to at least one eNB that needs to perform the EM notification.
- the device 600 may further include (not shown): a receiving module, configured to receive the authentication information sent by the solid E, and a processing module, configured to execute, according to the authentication information that is accessed by the receiving module, The authentication operation of the acquiring module acquires the capability of the EM notification reported by the UE.
- the sending module is further configured to: if the EM information is long EM information including location information and/or motion direction information of the UE and/or EM event specific content information, generate the long EM information including the long EM information.
- EM broadcasts a message and sends, and the first eNB sends a paging message carrying the EM broadcast message indication to the UE under the first eNB; if the EM information is short EM point information including EM event indication information Transmitting, by the physical downlink shared channel, the paging message that is sent by the first eNB to the UE that is instructed to carry the EM information; or sending the paging message that includes the indication of the scheduling information, where the scheduling information is used to indicate that the physical downlink shared channel is used to The EM information is notified to the UE under the first eNB; or the EM information including the EM information is carried by scheduling the EM dedicated wireless network temporary identifier or using the physical downlink control channel temporarily identified by the dedicated wireless network to carry the EM
- the sixth embodiment of the present invention further provides an apparatus for processing an alarm event.
- the apparatus 700 includes: a receiving module 71 0, configured to receive an EM notification including an alarm event EM information.
- the EM information is obtained by the first eNB from the EM information reported by the user terminal UE, and the sending module 720 is configured to send, by the UE belonging to the at least one eNB, an EM notification that is received by the receiving module and includes an EM event.
- the sending module 720 is further configured to forward the EM notification including the EM event to an eNB that is adjacent to the at least one eNB.
- the receiving module 71 is specifically configured to: receive, by the first eNB, the EM notification that is sent according to the location information of the UE; or receive, by the first eNB, the at least one eNB in the pre-configured neighboring cell forwarding table.
- the EM notification sent later, the forwarding table includes the at least one eNB information for performing the EM notification.
- the receiving module 71 is specifically configured to: receive an EM notification that includes the EM information that is forwarded by the first eNB by using the MME.
- the seventh embodiment of the present invention further provides an apparatus for processing an alarm event. As shown in FIG. 7, the apparatus 800 includes: a receiving module 81 0, configured to receive the EM information sent by the first base station eNB.
- the EM notifying; the sending module 820 is configured to: after the receiving module 81 0 receives the EM notification that includes the EM information, send the EM notification that includes the EM information to the at least one eNB.
- the sending module 820 is further configured to: learn, according to the EM information, the at least one eNB that needs to perform the EM notification, send an EM notification to the at least one eNB, or pre-configure an EM forwarding table, where the forwarding table records
- the at least one eNB that needs to perform the EM notification sends an EM notification message to the eNB that needs to perform EM notification by using the forwarding table.
- the sending module 820 is further configured to perform an authentication operation of the capability of the UE to report the EM notification according to the EM information after acquiring the EM information. It should be noted that those skilled in the art can easily understand that various alarm event processings described in the foregoing embodiments may also exist as part of other systems, and implement alarm event processing in the system and the description in the foregoing embodiments. The other systems that include the alarm event processing device in the above embodiments are also included in the protection scope of the present application, and details are not described herein again.
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Abstract
一种实现告警事件处理的方法、装置和系统;其中,所述方法包括:第一基站eNB获取用户终端UE上报的告警事件EM信息;所述第一eNB向需要进行EM通知的至少一个eNB发送包含所述EM信息的EM通知,以使得所述至少一个eNB向所述至少一个eNB下的UE发送所述EM通知;所述第一eNB向所述第一eNB下的UE发送包含所述EM信息的所述EM通知。釆用本发明实施例的方法、装置和系统,能够缩短紧急状况下告警事件处理的信令交互流程,进而极大地缩短了蜂窝网通信系统的通信时延,并且大大降低了系统负荷。
Description
一种实现告警事件处理的方法、 装置和系统 本申请要求于 2011 年 09 月 30 日提交中国专利局、 申请号为 201110297538.X,发明名称为"一种实现告警事件处理的方法、装置和系统" 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 本发明涉及通信技术领域, 尤其涉及一种实现告警事件处理的方法、 装置和系统。
背景技术 目前, 随着通信技术的发展, 实现人、 设备与系统间智能互连的物联 网已被认为是继计算机、 互联网与移动通信网之后的世界信息产业第三次 浪潮, 其目的是把所有物品通过信息传感设备与互联网连接起来, 实现智 能化识别和管理。 在智能交通系统中, 有一类应用为紧急预警, 包括前方事故预警和前 方道路通行预警等等, 此类应用要求端到端时延在百毫秒级别, 以使更多 的车辆实施避险, 提高出行安全, 减免生命及财产损失。 而短距离通信技术方面, 现有蜂窝通信系统具有无缝覆盖、 布设方便 等诸多优势, 但是, 由于其端到端延迟达到以秒计的级别, 无法满足紧急 业务的通信时延需求; 同时, 发送信息要经历的节点较多, 因此信令交互 也多, 因而当物联网设备大规模地执行周期上报时, 还存在因信令交互过 多所导致的系统超负荷的问题。
发明内容
有鉴于此, 本发明实施例提供一种实现告警事件处理的方法、 装置和 系统, 能够缩短通信延时、 降低系统负荷。 为解决上述问题, 本发明实施例提供的技术方案如下:
一方面, 提供了一种告警事件处理的方法, 包括: 第一基站 eNB获取 用户终端 UE上>¾的告警事件 EM信息; 所述第一 eNB向需要进行 EM通知的 至少一个 eNB发送包含所述 EM信息的 EM通知, 以使得所述至少一个 eNB 向所述至少一个 eNB下的 UE发送所述 EM通知; 所述第一 eNB向所述第一 eNB下的 UE发送包含所述 EM信息的所述 EM通知。 另一方面, 提供了一种告警事件处理的方法, 包括: 至少一个基站 eNB 接收包含告警事件 EM信息的 EM通知, 所述 EM信息为所述第一 eNB从用户 终端 UE上报的 EM信息中获取的; 所述至少一个 eNB向属于所述至少一个 eNB的 UE发送所述包含 EM事件的 EM通知。 另一方面, 提供了一种告警事件处理的方法, 包括: 移动性管理实体 固 E接收包含 EM信息的 EM通知;所述固 E接收到包含 EM信息的 EM通知后, 向至少一个 eNB发送所述包含 EM信息的所述 EM通知。 另一方面, 提供了一种告警事件处理的装置, 包括: 获取模块, 用于 获取用户终端 UE上报的告警事件 EM信息; 发送模块, 用于向需要进行 EM 通知的至少一个 eNB发送所述获取模块获取的包含所述 EM信息的 EM通知; 所述发送模块用于向所述第一 eNB下的 UE发送包含所述 EM信息的所述 EM 通知。 另一方面, 提供了一种告警事件处理的装置, 包括: 接收模块, 用于 接收包含告警事件 EM信息的 EM通知, 所述 EM信息为所述第一 eNB从用户 终端 UE上报的 EM信息中获取的; 发送模块, 用于向属于所述至少一个 eNB 的 UE发送所述接收模块接收的包含 EM事件的 EM通知。 另一方面, 提供了一种告警事件处理的装置, 其特征在于, 包括: 接 收模块, 用于接收包含 EM信息的 EM通知; 发送模块, 用于当所述接收模 块接收包含所述 EM信息的所述 EM通知后, 向至少一个 eNB发送所述包含 EM信息的所述 EM通知。
可以看出, 釆用本发明实施例的方法、 装置和系统, 通过将 eNB或 MME 作为转发点, 将 UE上报的 EM事件通知给需要进行 EM事件通知的 UE所属 的 eNB , 然后各 eNB再将所述 EM事件通知给相应的 UE , 相对于现有呼叫过 程减少了 EM通知过程中所经历的节点, 从而缩短了紧急状况下告警事件处 理的信令交互流程, 进而极大地缩短了蜂窝网通信系统的通信时延, 并且 大大降低了系统负荷。
附图说明 为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对 实施例或现有技术描述中所需要使用的附图作简单地介绍, 显而易见地, 下面描述中的附图仅仅是本发明的一些实施例, 对于本领域普通技术人员 来讲, 在不付出创造性劳动的前提下, 还可以根据这些附图获得其他的附 图。
图 1是本发明实施例实现告警事件处理的一种方法流程示意图; 图 2是本发明实施例以固 E为转发点实现告警事件处理的另一种方法 流程示意图;
图 3是本发明实施例以 eNB为转发点实现告警事件处理的另一种方法 流程示意图;
图 4是本发明实施例实现告警事件处理的另一种方法流程示意图; 图 5是本发明实施例告警事件处理装置的一种结构示意图; 图 6是本发明实施例告警事件处理装置的另一种结构示意图; 图 7是本发明实施例告警事件处理装置的又一种结构示意图。
具体实施方式 下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进
行清楚、 完整地描述; 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是全部的实施例。 基于本发明中的实施例, 本领域普通技术人员在没 有做出创造性劳动前提下所获得的所有其他实施例, 都属于本发明保护的 范围。
在智能交通系统中 , DSRC ( Dedicated Short Range Communications, 专用短程通信)等技术是通过车与车之间的通信及转发来实现紧急预警通 知的, 但这种方法需要所有车辆增加短程通信模块, 通信质量得不到保障, 且对通信距离要求严格; 而且通过车辆与路侧设备间的通信及转发来实现 应急通信时, 为了保障在各个点的紧急预警的短时延, 需要大量布设路侧 设备, 成本高昂。
例如现有技术从一个用户设备 UE1到另一个用户设备 UE2的寻呼过程 中, 接入过程和寻呼过程需要消耗较长的时间, 并且从 UE1到 UE2要经历 的节点也较多, 即整个路径从 UE1开始, 往往需要依次经历 eNB (evolved NodeB, 基站)、 S-GW ( Service Gateway, 服务网关)、 P-GW (Packet Data Gateway, 分组数据网关)、 MME (mobility management entity, 移动性管 理实体)、 APP (Application,应用程序)、 P_GW、 S-GW, eNB, 最后到达 UE2, 整个路径时延最长可达近 3秒; 因而当物联网设备大规模地执行周期上报 时, 还存在因信令交互过多所导致的系统超负荷的问题。
为了解决上述技术问题, 本发明提供了一种现告警事件处理的方法, 详 情如下所述: 本发明实施例提供了一种告警事件处理的方法, 其可以应用于 UTMS ( Universal Mobile Telecommunication System, 通用移动通信系统)、 LTE ( Long Term Evolution, 长期演进通信系统) 等系统中, 而本发明实 施例仅以 LTE系统为例进行说明; 具体, 如图 1所示, 该方法包括:
步骤 210: 第一 eNB (基站)获取 UE上报的 EM (emergency message, 告警事件)信息;
在实际应用过程中, 当发生 EM事件的 UE处于连接态时, 所述 UE直接 将所述 EM事件信息发送至其所属的第一 eNB; 具体的, 所述 UE可通过发送 携带 EM信息的 NAS (非接入层)信令、 service request (服务请求)消息、
或 a t tach reques t (附着)消息等方式, 将所述 EM信息送至其所属的第一 eNB, 当然也可直接向所述第一 eNB发送 EM消息, 告知其所述 EM事件的相 关信息, 在此本实施例不做具体限定;
而当所述发生 EM事件的 UE处于 Id le (空闲)态时, 所述 UE在上 4艮所 述 EM事件信息前需要与其所属的第一 eNB建立 RRC (无线资源控制)连接, 而该 RRC连接建立过程可釆用现有的 UE接入方式,例如其可包括以下步骤:
S211 : UE检测到 EM事件后, 向其所属的第一 eNB发送 RRC Connect ion Reques t (无线资源控制连接请求) 消息;
S212: 所述第一 eNB接收到所述 RRC Connect ion Reques t消息后, 向 该 UE反馈 RRC Connect ion Setup (无线资源控制连接建立) 消息;
S213: 所述 UE接收到所述 RRC Connect ion Setup消息后, 向所述第 一 eNB反馈 RRC Connect ion Setup Complete (无线资源控制连接建立完成 ) 消息;而该消息中携带了包含 EM事件信息的 NAS (非接入层)信令、 service reques t (服务请求) 消息、 或 a t tach reques t (附着) 消息等; 同时, 也 可在该 RRC Connec t ion Setup Comp lete消息中直接携带所述 EM事件信息; 值得注意的是, 为了使 EM事件信息的传递更为准确, 在上述步骤的基 础上, 本实施例的方法还可包括: 在所述第一 eNB中预设用于 EM事件的专 用 preamble (前导码), 并通过小区广播告知其小区内的 UE , 以使具备 EM 事件上报能力的 UE存储该 EM事件的专用前导码,并使所述 UE在检测到 EM 事件发生时, 利用该专用前导码上报所述 EM事件信息, 进而所述第一 eNB 利用该专用前导码获取所述 UE上报的所述 EM信息;
其中, 所述 EM事件信息还可包括但不局限于: EM事件指示消息、 EM 事件点信息、 车辆位置信息、 行车方向信息等。
步骤 220: 所述第一 eNB向需要进行 EM通知的至少一个 eNB发送包含 所述 EM信息的 EM通知, 以使得所述至少一个 eNB向所述至少一个 eNB下 的 UE发送所述 EM通知;
在本实施例中, 可以第一 eNB作为中继转发进行通知, 也可以固 E作 为中继进行转发通知, 具体是实际应用而定, 本文不做具体限定; 下面分
别以两种转发形式进行详细说明:
A、 以第一 eNB作为中继进行转发通知 当所述第一 eNB接收到所述 EM信息后, 首先判断是否需要将所述 EM 信息通知至少一个 eNB , , 如果需要, 则向所述至少一个 eNB发送 EM通知消 息; 所述至少一个 eNB接收到所述 EM通知后, 判断是否需要再向其他 eNB 进行 EM通知, 如果需要, 则向其他 eNB发送 EM通知消息; 其中, 值得注意的是, 所述第一 eNB判断是否需要将所述 EM信息通知 所述至少一个 eNB 时, 可釆用下述两种方式中的任意一种, 但并不局限于 此: 第一、 所述第一 eNB基于需要进行 EM通知的 UE的位置信息进行判断, 具体的, 所述 UE的位置信息即为该 UE的经纬度信息, 所述第一 eNB基于 该 UE的经纬度信息以及本 eNB的网络规划部署,即可判别是否需要向该 UE 所属的 eNB转发 EM通知; 第二、 预先配置所述第一 eNB 的邻区转发表, 该转发表中记载有需要 进行 EM通知的所述至少一个 eNB信息; 当所述第一 eNB接收到所述 EM信 息后, 如果在所述邻区转发表中检测到所述至少一个 eNB , 则可利用该转发 表向所述至少一个 eNB发送 EM通知;
B、 以固 E作为中继进行转发通知 当所述第一 eNB接收到所述 EM信息后, 将该 EM信息通知给所述固 E , 具体的通知方式可釆用在 NAS信令中携带 EM事件信息或直接将所述 EM信 息发送给所述固 E , 当然本领域普通技术人员很容易了解还可以有其他方 式, 本实施例并不局限于此; 所述固 E接收到所述 EM事件信息通知后, 向 需要进行 EM通知的至少一个 eNB发送包含 EM信息的 EM通知, 具体的通知 方式可釆用下述方式中的任意一种, 但并不局限于此:
第一、 根据 EM信息获知需要进行 EM通知的所述至少一个 eNB; 第二、 获取需要进行 EM事件通知的 UE位置信息, 利用该位置信息向 该 UE所属的 eNB下发通知; 具体的, 所述 UE的位置信息即为该 UE的经纬 度信息, 获取该 UE的经纬度信息以及 eNB的整体网络规划部署, 即可判别
是否需要向该 UE所属的 eNB下发 EM通知, 具体可参照现有利用 UE位置信 息确定 eNB的方式进行, 本文在此不再赘述; 第三、 预先配置 EM事件转发表, 该转发表中记载有需要进行 EM通知 的至少一个 eNB信息, 然后利用该转发表下发 EM通知消息给所述至少一个 eNB; 值得注意的是, 当所述固 E获取到 EM事件信息后, 如果所述 UE已执 行过上报 EM信息能力的鉴权, 则直接向需要进行 EM通知的所述至少一个 eNB发送 EM通知消息; 如果所述 UE未执行过鉴权操作, 则此时需要执行 UE的鉴权操作, 具体的鉴权过程与现有方式类似, 本文在此不再赘述; 此 外, 在本实施例中, 所述鉴权操作还可以在所述发生 EM的 UE所属的所述 第一 eNB 中完成, 具体的鉴权过程也可与现有方式相同, 本文在此不再赘 述。
步骤 230:所述第一 eNB向所述第一 eNB下的 UE发送包含所述 EM信息 的所述 EM通知。 具体的, 所述第一 eNB将所述包含 EM信息的所述 EM通知下发给所述 UE可通过下述方式中的任意一种来实现, 但并不局限于此:
A、 在所述第一 eNB收到所述 EM信息后, 如果该信息为包含所述 UE的 位置信息和 /或运动方向信息和 /或 EM事件具体内容信息的长 EM信息, 则 所述第一 eNB生成包含所述长 EM信息的 EM广播消息并发送, 且所述第一 eNB发送携带所述 EM广播消息指示的寻呼消息给所述第一 eNB所属的 UE; 具体的, 所述 UE位置信息即为所述 UE的经纬度信息; 其运动方向信息包 括了所述 UE的位移方向、 位移角度等, 比如所述 UE在北偏西 30度方向移 动; 所述 EM事件具体内容包括但不限于撞车、车辆故障、 山体滑坡等;
B、 在所述第一 eNB收到所述 EM信息后, 如果所述 EM信息为包含 EM 事件指示信息的短 EM信息, 则所述第一 eNB直接将携带 EM信息指示的寻 呼消息发送给所述第一 eNB所属的 UE; 其中, 所述 EM事件指示信息即为 EM ind i ca t ion等, 通常只占用 lb i t , 当然并不局限于此;
C、 在所述第一 eNB收到所述 EM信息后, 所述第一 eNB利用寻呼消息 携带 EM调度信息, 通过 PDSCH (物理下行共享信道)、 PDCCH (物理下行控
制信道)将所述 EM信息传输给所述 UE;
D、 在所述第一 eNB收到所述 EM信息后, 所述第一 eNB通过调度 EM专 用 RNTI (无线网络临时标识)或利用专用 RNTI PDCCH携带所述 EM信息, 将包含 EM信息的所述 EM通知发送给所述第一 eNB所属的 UE。 需要说明的是, 上述四种下发 EM通知的方式在本实施例中仅仅是以所 述第一 eNB为例进行说明, 而其他的所述至少一个 eNB下发所述 EM通知给 所述 UE的下发方式与此相同, 本文在此不再赘述。 可以看出, 利用上述各实施例的方法, 通过将 eNB或 MME作为转发点, 将 UE上报的 EM事件通知给需要进行 EM事件通知的 UE所属的 eNB,然后各 eNB再将所述 EM事件通知给相应的 UE , 从而缩短了紧急状况下告警事件处 理的信令交互流程, 进而极大地缩短了蜂窝网通信系统的通信时延, 并且 大大降低了系统负荷。
下面分别以 MME和 eNB作为转发点为例, 对上述实施例一的方法进行 详细说明;
本发明实施例二是以固 E为转发点为例进行说明,如图 2 ,该方法包括:
S301 : eNBl配置 EM事件专用 preamble , 并通过小区广播告知其小区 内的 UE, 具有 EM事件上 能力的 UE收到该专用 preamble后存储;
S302: UE1检测到 EM事件, 选择专用 preamble以较大功率发送 EM信 息给所述 eNBl , 此时该 UE1处于空闲态; S303: 所述 eNBl检测到 UE1的上报信息后, 向该 UE1反馈 TA (时间提 前量)及 SG (调度准许) 消息;
S304: 所述 UE1 收到 TA和 SG后向所述 eNBl 反馈 RRC Connect ion Reques t消息;
S305: 所述 eNBl接收到所述 RRC Connect ion Reques t消息后向该 UE1 反馈 RRC Connect ion Setup消息;
S306: 所述 UE1接收到所述 RRC Connect ion Setu 消息后向该 eNBl 反馈 RRC Connect ion Setup Complete消息, 该消息中包含携带 EM信息的 NAS信令;
S 307 : 所述 eNBl接收到包含携带 EM信息的 NAS信令后, 将该 NAS信 令转发给固 E;
S 308 : 所述固 E接收到所述 NAS信令后, 当检测到该 NAS信令中包含 由 EM信息时, 执行 UE1鉴权过程, 并根据 EM信息计算需要进行 EM通知的 UE所属的 eNB ,向所述需要进行 EM通知的 UE所属的 eNB发送 EM通知消息, 该消息中携带 EM信息;
S 309 : 收到 EM通知消息的 eNB向所述丽 E反馈 EM通知响应消息;
S 310: 如果所述 eNB接收到的 EM通知消息中包含所述 EM的事故点信 息, 则利用该 EM的事故点信息生成 EM广播消息, 然后利用寻呼消息携带 所述 EM信息将所述 EM事件通知给 UE;如果所述 eNB获得的 EM通知消息中 仅包括 EM信息,则直接利用寻呼消息携带 EM信息将所述 EM信息通知给 UE;
S 311 : 各 eNB所属小区内的 UE接收到携带 EM信息的寻呼消息后, 上 报至应用层, 完成告警事件的处理。 此外, 基于上述实施例二的内容, 如果发生 EM的 UE处于连接态, 则 无需接入过程, 即该方法可不包含 S 303至 S 306的部分接入过程, 而只需 UE1直接发送携带 EM信息的 NAS信令至 eNBl即可, 或者 UE1直接发送 EM 信息至 eNBl , 而 eNBl接收到所述 EM信息后的处理过程相同, 在此不再赘 述。
当然, 所述 UE1与所述 eNBl建立连接的过程也可不釆用专用前道码来 实现, 可釆用现有接入操作来实现; 并且, 当所述 MME接收到 NAS信令后, 如果判断所述 UE1已经执行过上报 EM信息能力的鉴权操作, 则此时的鉴权 操作即可省去, 直接进行后续操作。
本发明实施例三是以 eNB为转发点为例进行说明,如图 3 ,该方法包括:
S401 : eNBl配置 EM专用 preamb le , 并通过小区广播告知其小区内的 UE , 具有 EM上报能力的 UE收到该专用 preamb le后存储;
S402 : UE1检测到 EM发生, 选择专用 preamb le以较大功率发送 EM信 息给所述 eNBl , 此时该 UE1处于连接态;
S403: 所述 eNBl检测到 UE1的上 ^艮信息后, 基于该 UE的位置信息判
断是否需要向其他 eNB告知该 EM信息, 若需要, 则向所述其他 eNB发送 EM 通知消息;
S404 : 所述其他 eNB收到 EM通知消息后, 向 eNBl反馈响应消息;
S405 : 如果所述其他 eNB接收到的 EM通知消息中包含所述 EM的事故 点信息, 则利用该 EM的事故点信息生成 EM广播消息, 然后利用寻呼消息 携带所述 EM信息将所述 EM信息通知给 UE;如果所述 eNB获得的 EM通知消 息仅包括 EM信息, 则直接利用寻呼消息携带 EM信息将所述 EM信息通知给 UE;
S406 : 各 eNB所属小区内的 UE接收到携带 EM信息的寻呼消息后, 上 报至应用层, 完成告警事件的处理。 此外,基于上述实施例三的内容, 本实施例四提出的方案可釆用在 UE1 接入过程中携带 EM信息给 eNBl , 如图 4所示, 该方法包括:
S501 : eNBl配置 EM专用 preamb le , 并通过小区广播告知其小区内的 UE , 具有 EM上报能力的 UE收到该专用 preamb le后存储; S502 : UE1检测到 EM发生后, 选择专用 preamb le以较大功率发送 EM 信息给所述 eNBl , 此时该 UE1处于空闲态;
S503: 所述 eNBl检测到 UE1的上报信息后, 向该 UE1反馈 TA (时间提 前量)及 SG (调度准许) 消息;
S504 : 所述 UE1收到 TA和 SG后向所述 eNBl反馈携带 EM信息的 RRC Connec t ion Reques t消息;
S505 : 所述 eNBl检测到 UE1的上 ^艮信息后, 基于所述 UE1的位置信息 判断是否向其他 eNB告知该 EM信息,若需要,则向所述其他 eNB发送 EM通 知消息;
S506 : 所述其他 eNB收到 EM通知消息后, 向 eNBl反馈响应消息; S507 : 如果所述其他 eNB接收到的 EM通知消息中包含所述 EM的事故 点信息, 则利用该 EM的事故点信息生成 EM广播消息, 然后利用寻呼消息 携带所述 EM信息将所述 EM信息通知给 UE;如果所述 eNB获得的 EM通知消 息仅包括 EM信息, 则直接利用寻呼消息携带 EM信息将所述 EM信息通知给
UE;
S508 : 各 eNB所属小区内的 UE接收到携带 EM信息的寻呼消息后, 上 报至应用层, 完成告警事件的处理。 此外, 基于上述实施例三和实施例四的内容, 如果发生 EM的 UE处于 连接态, 则无需接入过程, 即 UE1直接发送携带 EM信息的 NAS信令至 eNBl 即可, 或者 UE1直接发送 EM信息至 eNBl , 而 eNBl接收到所述 EM信息后的 处理过程相同,在此不再赘述; 并且,基于实际应用需求,如果在所述 eNBl 接收到所述 EM信息后, 如果所述 UE1未执行过 UE上报 EM能力鉴权过程, 则所述 eNBl可向固 E发起 UE1的鉴权操作, 或者由 eNBl来完成 UE1的鉴 权操作, 具体的鉴权过程可釆用现有鉴权方式实现, 本实施例在此不再赘 述。 基于上述思想, 本发明实施例五又提出了一种实现告警事件处理的装 置, 如图 5所示, 该装置 600包括: 获取模块 610 , 用于获取用户终端 UE 上报的告警事件 EM信息; 发送模块 620 , 用于向需要进行 EM通知的至少一 个 eNB发送所述获取模块 61 0获取的包含所述 EM信息的 EM通知; 所述发 送模块 620用于向所述第一 eNB下的 UE发送包含所述 EM信息的所述 EM通 知。 具体的, 所述获取模块 610包括(图中未示出): 第一获取子模块, 用 于当发生 EM的 UE处于连接态时, 直接获取所述 UE上报的所述 EM信息; 第二获取子模块, 用于当发生 EM的 UE处于空闲态时, 在与所述 UE建立无 线资源控制 RRC连接后获取所述 EM信息。 其中, 所述第二获取子模块具体用于: 当发生 EM的 UE处于空闲态时, 从 RRC连接建立完成消息中获取所述 EM信息; 或者当发生 EM的 UE处于空 闲态时, 从 RRC连接建立完成消息中的非接入层信令中获取所述 EM信息; 或者当发生 EM的 UE处于空闲态时, 从 RRC连接建立完成消息中的服务请 求消息中获取所述 EM信息; 或者当发生 EM的 UE处于空闲态时, 从 RRC连 接建立完成消息中的附着消息中获取所述 EM信息。 优选的, 所述第一获取子模块具体用于: 从所述 UE发送的携带 EM信 息的非接入层信令、 服务请求消息或附着消息中获取所述 EM信息。
此外, 所述装置 600还可包括(图中未示出): 设置模块, 用于预设用 于所述 EM的专用前导码; 所述获取模块具体用于利用所述设置模块设置的 所述专用前导码获取所述 UE上>¾的所述 EM信息。 除此之外, 所述装置 600还包括(图中未示出): 判断模块, 用于判断 是否需要将所述获取模块获取的 EM信息通知所述至少一个 eNB; 所述发送 模块具体用于根据判断模块的判断结果向所述至少一个 eNB发送所述 EM通 知。
其中, 所述判断模块具体用于: 根据所述 UE的位置信息判断是否需要 向所述至少一个 eNB发送所述 EM通知; 或, 预先配置第一 eNB的邻区转发 表, 所述转发表中包含需要进行 EM通知的所述至少一个 eNB信息, 当在所 述邻区转发表中检测到所述至少一个 eNB ,则向所述至少一个 eNB发送所述 EM通知。 需要说明的是, 所述发送模块还用于: 当所述获取模块获取到所述 EM 信息后, 将所述 EM信息通知给移动性管理实体固 E , 以使得所述丽 E接收 到包含所述 EM信息的所述 EM通知后, 向需要进行 EM通知的至少一个 eNB 发送所述包含 EM信息的所述 EM通知。 此外, 所述装置 600还可包括(图中未示出):接收模块,用于接收固 E 下发的鉴权信息; 处理模块, 用于根据接收模块接入的所述鉴权信息执行 所述获取模块获取所述 UE上报的 EM通知的能力的鉴权操作。 其中, 所述发送模块具体还可用于: 如果 EM信息为包含所述 UE的位 置信息和 /或运动方向信息和 /或 EM事件具体内容信息的长 EM信息, 则生 成包含所述长 EM信息的 EM广播消息并发送, 且所述第一 eNB发送携带所 述 EM广播消息指示的寻呼消息给所述第一 eNB下的 UE ; 如果所述 EM信息 为包含 EM事件指示信息的短 EM点信息, 直接将携带 EM信息指示的寻呼消 息发送给所述第一 eNB下的 UE ; 或者, 发送携带包含调度信息指示的寻呼 消息, 所述调度信息用于指示通过物理下行共享信道将所述 EM信息通知给 所述第一 eNB下的 UE ; 或者, 通过调度 EM专用无线网络临时标识或利用专 用无线网络临时标识的物理下行控制信道携带所述 EM信息, 将包含 EM信 息的所述 EM通知发送给所述第一 eNB下的 UE。
除此之外, 本发明实施例六又提出了一种告警事件处理的装置, 如图 6 所示, 该装置 700包括: 接收模块 71 0 , 用于接收包含告警事件 EM信息的 EM通知,所述 EM信息为所述第一 eNB从用户终端 UE上报的 EM信息中获取 的; 发送模块 720 , 用于向属于所述至少一个 eNB的 UE发送所述接收模块 接收的包含 EM事件的 EM通知。 其中, 所述发送模块 720还用于向所述至少一个 eNB相邻的 eNB转发 所述包含 EM事件的 EM通知。 而所述接收模块 71 0具体还可用于: 接收第 一 eNB根据所述 UE的位置信息判断发送的 EM通知; 或者接收第一 eNB在 预先配置的邻区转发表中检测到所述至少一个 eNB后发送的 EM通知, 所述 转发表中包含进行 EM通知的所述至少一个 eNB信息。 此外, 所述接收模块 71 0具体还可用于: 接收第一 eNB通过 MME转发 的包含 EM信息的 EM通知。 基于上述相同思想, 本发明实施例七又提出了一种告警事件处理的装 置, 如图 7所示, 该装置 800包括: 接收模块 81 0 , 用于接收第一基站 eNB 发送的包含 EM信息的 EM通知; 发送模块 820 , 用于当所述接收模块 81 0接 收包含所述 EM信息的所述 EM通知后, 向至少一个 eNB发送所述包含 EM信 息的所述 EM通知。 其中, 所述发送模块 820具体还可用于: 根据 EM信息获知需要进行 EM 通知的所述至少一个 eNB , 向所述至少一个 eNB发送 EM通知; 或预先配置 EM转发表, 所述转发表中记录需要进行 EM通知的所述至少一个 eNB , 利用 所述转发表下发 EM通知消息给需要进行 EM通知的所述 eNB。 此外, 所述发送模块 820还用于获取到 EM信息后, 根据所述 EM信息 执行 UE的上报 EM通知的能力的鉴权操作。 需要注意的是, 本领域技术人员很容易了解, 上述实施例中所描述的 各种告警事件处理也可以作为其他系统的一部分存在, 并在系统中实现告 警事件处理方面与上述实施例中的描述一致, 因而包含上述实施例中的告 警事件处理装置的其他系统也应包含在本申请的保护范围之内, 在此不再 赘述。
专业人员还可以进一步应能意识到, 结合本文中所公开的实施例描述
的各示例的单元及算法步骤, 能够以电子硬件、 计算机软件或者二者的结 合来实现, 为了清楚地说明硬件和软件的可互换性, 在上述说明中已经按 照功能一般性地描述了各示例的组成及步骤。 这些功能究竟以硬件还是软 件方式来执行, 取决于技术方案的特定应用和设计约束条件。 专业技术人 员可以对每个特定的应用来使用不同方法来实现所描述的功能, 但是这种 实现不应认为超出本发明实施例的范围。 结合本文中所公开的实施例描述的方法或算法的步骤可以直接用硬 件、 处理器执行的软件模块, 或者二者的结合来实施。 对所公开的实施例的上述说明, 使本领域专业技术人员能够实现或使 用本发明实施例。 对这些实施例的多种修改对本领域的专业技术人员来说 将是显而易见的, 本文中所定义的一般原理可以在不脱离本发明实施例的 精神或范围的情况下, 在其它实施例中实现。 因此, 本发明实施例将不会 被限制于本文所示的这些实施例, 而是要符合与本文所公开的原理和新颖 特点相一致的最宽的范围。
实施例, 凡在本发明实施例的精神和原则之内, 所作的任何修改、 等同替 换、 改进等, 均应包含在本发明实施例的保护范围之内。
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Claims
1、 一种告警事件处理的方法, 其特征在于, 包括:
第一基站 eNB获取用户终端 UE上报的告警事件 EM信息;
所述第一 eNB向需要进行 EM通知的至少一个 eNB发送包含所述 EM信 息的 EM通知, 以使得所述至少一个 eNB向所述至少一个 eNB下的 UE发送 所述 EM通知;
所述第一 eNB向所述第一 eNB下的 UE发送包含所述 EM信息的所述 EM 通知。
2、 根据权利要求 1所述的方法, 其特征在于, 所述第一 eNB获取 UE 上报的 EM信息包括:
当发生 EM的 UE处于连接态时, 直接获取所述 UE上报的所述 EM信息; 当发生 EM的 UE处于空闲态时, 所述第一 eNB在与所述 UE建立无线资 源控制 RRC连接后获取所述 EM信息。
3、 根据权利要求 2所述的方法, 其特征在于, 当发生 EM的 UE处于空 闲态时, 所述第一 eNB在与所述 UE建立无线资源控制 RRC连接后获取所述 EM信息包括:
当发生 EM的 UE处于空闲态时, 所述第一 eNB从 RRC连接建立完成消 息中获取所述 EM信息; 或者
当发生 EM的 UE处于空闲态时, 所述第一 eNB从 RRC连接建立完成消 息中的非接入层信令中获取所述 EM信息; 或者
当发生 EM的 UE处于空闲态时, 所述第一 eNB从 RRC连接建立完成消 息中的服务请求消息中获取所述 EM信息; 或者
当发生 EM的 UE处于空闲态时, 所述第一 eNB从 RRC连接建立完成消 息中的附着消息中获取所述 EM信息。
4、 根据权利要求 2所述的方法, 其特征在于, 所述当发生 EM的 UE处 于连接态时, 直接获取所述 UE上报的所述 EM信息包括:
所述第一 eNB从所述 UE发送的携带 EM信息的非接入层信令、 服务请 求消息或附着消息中获取所述 EM信息。
5、 根据权利要求 1至 4任一权利要求所述的方法, 其特征在于, 该方
法还包括:
在所述第一 eNB中预设用于所述 EM的专用前导码, 所述第一 eNB利用 所述专用前导码获取所述 UE上>¾的所述 EM信息。
6、 根据权利要求 1所述的方法, 其特征在于, 所述第一 eNB向需要进 行 EM通知的至少一个 eNB发送包含所述 EM信息的 EM通知包括:
所述第一 eNB判断是否需要将所述 EM信息通知所述至少一个 eNB , 如 果需要, 向所述至少一个 eNB发送所述 EM通知。
7、 根据权利要求 6所述的方法, 其特征在于, 所述第一 eNB判断是否 需要将所述 EM信息通知所述至少一个 eNB包括:
根据所述 UE的位置信息判断是否需要向所述至少一个 eNB发送所述 EM 通知 或,
预先配置第一 eNB的邻区转发表, 所述转发表中包含需要进行 EM通知 的所述至少一个 eNB信息,当在所述邻区转发表中检测到所述至少一个 eNB , 则向所述至少一个 eNB发送所述 EM通知。
8、 根据权利要求 1至 7任一权利要求所述的方法, 其特征在于, 所述 方法还包括:
当所述第一 eNB获取到所述 EM信息后, 将所述 EM信息通知给移动性 管理实体固 E , 以使得所述固 E接收到包含所述 EM信息的所述 EM通知后, 向需要进行 EM通知的至少一个 eNB发送所述包含 EM信息的所述 EM通知。
9、 根据权利要求 8任一权利要求所述的方法, 其特征在于, 所述方法 还包括:
所述第一 eNB接收 MME下发的鉴权信息;
所述第一 eNB根据所述鉴权信息执行所述 UE的上报 EM通知的能力的 鉴权操作。
1 0、 根据权利要求 1所述的方法, 其特征在于, 所述第一 eNB向所述 第一 eNB所属的 UE发送包含所述 EM信息的所述 EM通知包括:
如果 EM信息为包含所述 UE的位置信息和 /或运动方向信息和 /或 EM事 件具体内容信息的长 EM信息, 则所述第一 eNB生成包含所述长 EM信息的 EM广播消息并发送,且所述第一 eNB发送携带所述 EM广播消息指示的寻呼 消息给所述第一 eNB所属的 UE;
如果所述 EM信息为包含 EM事件指示信息的短 EM信息,则所述第一 eNB
直接将携带 EM信息指示的寻呼消息发送给所述第一 eNB所属的 UE; 或者, 所述第一 eNB发送携带包含调度信息指示的寻呼消息, 所述调度信息 用于指示通过物理下行共享信道将所述 EM信息通知给所述第一 eNB所属的 UE; 或者,
通过调度 EM专用无线网络临时标识或利用专用无线网络临时标识的物 理下行控制信道携带所述 EM信息, 将包含 EM信息的所述 EM通知发送给所 述第一 eNB所属的 UE。
1 1、 一种告警事件处理的方法, 其特征在于, 包括:
至少一个基站 eNB接收包含告警事件 EM信息的 EM通知, 所述 EM信息 为所述第一 eNB从用户终端 UE上报的 EM信息中获取的;
所述至少一个 eNB向属于所述至少一个 eNB的 UE发送所述包含 EM事 件的 EM通知。
12、 根据权利要求 1 1所述的方法, 其特征在于, 所述方法还包括: 所述至少一个 eNB向其相邻的 eNB转发所述包含 EM事件的 EM通知。
1 3、 根据权利要求 12所述的方法, 其特征在于, 所述至少一个 eNB接 收包含 EM信息的 EM通知包括:
所述至少一个 eNB接收第一 eNB根据所述 UE的位置信息判断发送的 EM 通知 或者
所述至少一个 eNB接收第一 eNB在预先配置的邻区转发表中检测到所 述至少一个 eNB后发送的 EM通知, 所述转发表中包含进行 EM通知的所述 至少一个 eNB信息。
14、 根据权利要求 1 1所述的方法, 其特征在于, 至少一个基站 eNB接 收包含 EM信息的 EM通知包括:
至少一个基站 eNB接收第一 eNB通过 MME转发的包含 EM信息的 EM通 知。
15、 一种告警事件处理的方法, 其特征在于, 包括:
移动性管理实体固 E接收包含 EM信息的 EM通知;
所述固 E接收到包含 EM信息的 EM通知后, 向至少一个 eNB发送所述 包含 EM信息的所述 EM通知。
16、 根据权利要求 1 5所述的方法, 其特征在于, 所述向至少一个 eNB 发送包含 EM信息的所述 EM通知包括:
根据 EM信息获知需要进行 EM通知的所述至少一个 eNB ,向所述至少一 个 eNB发送 EM通知; 或
预先配置 EM转发表, 所述转发表中记录需要进行 EM通知的所述至少 一个 eNB ,利用所述转发表下发 EM通知消息给需要进行 EM通知的所述 eNB。
17、 根据权利要求 1 5或 1 6所述的方法, 其特征在于, 所述方法还包 括:
当所述固 E获取到 EM信息后, 根据所述 EM信息执行 UE的上报 EM通 知能力的鉴权操作。
18、 一种告警事件处理的装置, 其特征在于, 包括:
获取模块, 用于获取用户终端 UE上报的告警事件 EM信息;
发送模块, 用于向需要进行 EM通知的至少一个 eNB发送所述获取模块 获取的包含所述 EM信息的 EM通知;
所述发送模块用于向所述第一 eNB下的 UE发送包含所述 EM信息的所 述 EM通知。
19、 根据权利要求 18所述的装置, 其特征在于, 所述获取模块包括: 第一获取子模块, 用于当发生 EM的 UE处于连接态时, 直接获取所述
UE上^艮的所述 EM信息;
第二获取子模块, 用于当发生 EM的 UE处于空闲态时, 在与所述 UE建 立无线资源控制 RRC连接后获取所述 EM信息。
20、 根据权利要求 19所述的装置, 其特征在于, 所述第二获取子模块 具体用于:
当发生 EM的 UE处于空闲态时, 从 RRC连接建立完成消息中获取所述 EM信息; 或者
当发生 EM的 UE处于空闲态时, 从 RRC连接建立完成消息中的非接入 层信令中获取所述 EM信息; 或者
当发生 EM的 UE处于空闲态时, 从 RRC连接建立完成消息中的服务请 求消息中获取所述 EM信息; 或者
当发生 EM的 UE处于空闲态时, 从 RRC连接建立完成消息中的附着消 息中获取所述 EM信息。
21、 根据权利要求 19所述的装置, 其特征在于, 所述第一获取子模块 具体用于:
从所述 UE发送的携带 EM信息的非接入层信令、 服务请求消息或附着 消息中获取所述 EM信息。
22、 根权利要求 18至 21任一权利要求所述的装置, 其特征在于, 所 述装置还包括:
设置模块, 用于预设用于所述 EM的专用前导码;
所述获取模块具体用于利用所述设置模块设置的所述专用前导码获取 所述 UE上^艮的所述 EM信息。
23、 根据权利要求 18所述的装置, 其特征在于, 所述装置还包括: 判断模块, 用于判断是否需要将所述获取模块获取的 EM信息通知所述 至少一个 eNB;
所述发送模块具体用于根据判断模块的判断结果向所述至少一个 eNB 发送所述 EM通知。
24、 根据权利要求 23所述的装置, 其特征在于, 所述判断模块具体用 于:
根据所述 UE的位置信息判断是否需要向所述至少一个 eNB发送所述 EM 通知 或,
预先配置第一 eNB的邻区转发表, 所述转发表中包含需要进行 EM通知 的所述至少一个 eNB信息,当在所述邻区转发表中检测到所述至少一个 eNB , 则向所述至少一个 eNB发送所述 EM通知。
25、 根据权利要求 18至 24任一权利要求所述的装置, 其特征在于, 所述发送模块还用于, 当所述获取模块获取到所述 EM信息后, 将所述
EM信息通知给移动性管理实体固 E , 以使得所述固 E接收到包含所述 EM信 息的所述 EM通知后, 向需要进行 EM通知的至少一个 eNB发送所述包含 EM 信息的所述 EM通知。
26、 根据权利要求 25任一权利要求所述的装置, 其特征在于, 所述装 置还包括:
接收模块, 用于接收固 E下发的鉴权信息;
处理模块, 用于根据接收模块接入的所述鉴权信息执行所述获取模块 获取所述 UE上报的 EM通知的能力的鉴权操作。
27、 根据权利要求 18所述的装置, 其特征在于, 所述发送模块具体用 于:
如果 EM信息为包含所述 UE的位置信息和 /或运动方向信息和 /或 EM事 件具体内容信息的长 EM信息, 则生成包含所述长 EM信息的 EM广播消息并 发送, 且所述第一 eNB发送携带所述 EM广播消息指示的寻呼消息给所述第 一 eNB下的 UE;
如果所述 EM信息为包含 EM事件指示信息的短 EM点信息, 直接将携带 EM信息指示的寻呼消息发送给所述第一 eNB下的 UE; 或者,
发送携带包含调度信息指示的寻呼消息, 所述调度信息用于指示通过 物理下行共享信道将所述 EM信息通知给所述第一 eNB下的 UE ; 或者,
通过调度 EM专用无线网络临时标识或利用专用无线网络临时标识的物 理下行控制信道携带所述 EM信息, 将包含 EM信息的所述 EM通知发送给所 述第一 eNB下的 UE。
28、 一种告警事件处理的装置, 其特征在于, 包括:
接收模块, 用于接收包含告警事件 EM信息的 EM通知, 所述 EM信息为 所述第一 eNB从用户终端 UE上 ^艮的 EM信息中获取的;
发送模块, 用于向属于所述至少一个 eNB的 UE发送所述接收模块接收 的包含 EM事件的 EM通知。
29、 根据权利要求 28所述的装置, 其特征在于, 所述发送模块还用于 向所述至少一个 eNB相邻的 eNB转发所述包含 EM事件的 EM通知。
30、 根据权利要求 29所述的装置, 其特征在于, 所述接收模块具体用 于:
接收第一 eNB根据所述 UE的位置信息判断发送的 EM通知; 或者 接收第一 eNB在预先配置的邻区转发表中检测到所述至少一个 eNB后 发送的 EM通知, 所述转发表中包含进行 EM通知的所述至少一个 eNB信息。
31、 根据权利要求 28所述的装置, 其特征在于, 所述接收模块具体用 于:
接收第一 eNB通过 MME转发的包含 EM信息的 EM通知。
32、 一种告警事件处理的装置, 其特征在于, 包括:
接收模块, 用于接收第一基站 eNB发送的包含 EM信息的 EM通知; 发送模块, 用于当所述接收模块接收包含所述 EM信息的所述 EM通知 后, 向至少一个 eNB发送所述包含 EM信息的所述 EM通知。
33、 根据权利要求 32所述的装置, 其特征在于, 所述发送模块具体用
于:
根据 EM信息获知需要进行 EM通知的所述至少一个 eNB ,向所述至少一 个 eNB发送 EM通知; 或
预先配置 EM转发表, 所述转发表中记录需要进行 EM通知的所述至少 一个 eNB ,利用所述转发表下发 EM通知消息给需要进行 EM通知的所述 eNB。
34、 根据权利要求 32或 33所述的装置, 其特征在于, 所述发送模块 还用于获取到 EM信息后, 根据所述 EM信息执行 UE的上报 EM通知的能力 的鉴权操作。
35、 一种告警事件处理的系统, 其特征在于, 包括: 发生 EM并上报 EM 信息的 UE、 上述权利要求 1 8至 27任意一项所述的装置、 以及上述权利要 求 28至 31任意一项所述的装置。
36、 一种告警事件处理的系统, 其特征在于, 包括: 发生 EM并上报 EM 信息的 UE、 上述权利要求 18至 27任意一项所述的装置、 上述权利要求 28 至 31任意一项所述的装置、 以及上述权利要求 32至 34任意一项所述的装 置。
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