The present invention generally relates to the field of communication in particular mobile communication, and more particular to information provision by using paging and cell broadcast services. More specifically, the invention enables emergency information provision by using enhanced TMSI definition and cell broadcast services.
Current means for informing a large public about possible emergencies and hazards mainly include acoustical means such as a siren which can give only very limited information and requires a second information channel, e.g. radio broadcast, to get helpful guidance. Even in some regions of the world, such infrastructure does not exist, or the low population density makes deployment thereof inefficient.
GSM as of today has no specific precaution to support an efficient emergency information distribution.
The invention aims at providing methods and devices for conveying information such as emergency information to a large number of people in an efficient way.
The invention provides a method, terminal and network as de-fined in any one of the independent or dependent claims.
In at least one of the implementations of the invention, public land mobile network, PLMN, based technology is used. Existing infrastructures can be utilized. In one or more of the embodiments of the invention, GSM is a choice of system due to its almost global coverage with more than one billion users world wide.
According to at least one or more of the embodiments of the invention, an existing broadcast service can be used such as the GSM Cell-Broadcast Service which is an SMS type broadcast service and delivers in one session the notification and the message content. The cell-broadcast service allows sending of short messages to all mobile terminals attached or registered to a base station or cell. GSM 03.41 defines this Short Message Service-Cell Broadcast (SMS-CB) which allows messages to be broadcast to all mobile users in a specified geographical area.
The technology and standard is ready but not frequently used because the system design normally requires a very frequent reading of a notification channel, omitting almost a power saving sleep mode e.g. in a discontinuous reception, DRX, mode. This has harsh consequences on the battery drain and the stand-by time of a terminal. Therefore operators do not use these services but most of the terminals are supporting the feature.
In accordance with at least one of the embodiments of the invention, a broadcast service such as the Cell-Broadcast service is used for emergency support, yet avoiding the above mentioned significant consequences on the stand-by time of the mobile terminals. In at least one of the embodiments of the invention, this service is actively invoked by the terminal in case of need only, using a paging mechanism.
The invention will be described below in greater detail with reference to the drawings which illustrate some embodiments of the invention but without limiting or restricting the scope to any of the shown or described details:
Further, in step S13, the RAN or BSS/MSC 2 sends one or more paging messages which include a specific identifier such as an E-TMSI which is accepted by all terminals 1 receiving the paging message. The steps S12 and S13 can also be carried out in reversed order or simultaneously. In response to the receipt of the paging message on step S13, the terminal 1 switches, in step S14, to Cell-Broadcast Service support and thus starts to listen to the broadcast channel. In step S15, the terminal 1 displays or notifies the content received from the broadcast channel to the user of the terminal 1 via a display or acoustical means of the terminal 1.
Instead of the Cell-Broadcast Service, another broadcast service can also be used for informing the terminals on the emergency or other content.
In accordance with at least one or more of the embodiments of the invention, a paging mechanism such as the existing circuit-switched, CS, paging mechanism may be used for sending a paging message to the terminals which are attached to a cell or listening to a sender such as a base station or Node B. The paging message preferably includes a specific identifier such as a specific temporary mobile subscriber identity, TMSI. The terminal checks a received paging message in the usual manner with regard to the TMSI or identifier so as to detect whether the paging message is directed to the terminal. When the terminal detects that the identifier included in the paging message is the specific identifier the terminal is thus informed that the paging message is to be interpreted as an emergency notification. The terminal is configured to switch to, or activate the broadcast service when receiving such a paging message including the specific identifier. The paging mechanism is thus modified to switch the terminal to the broadcast reception mode. The mechanism and messages are backwards compatible with terminals not being able to interpret paging messages as emergency notifications. A terminal which is unable to interpret a paging message including the specific identifier as an emergency notification may simply disregard the paging message.
In at least one of the embodiments of the invention, such a paging message is formed so as to include the specific identifier formed as a specific TMSI. All terminals are identifying the received specific TMSI as valid.
Usually terminals receive a TMSI derived from the international mobile subscriber identity, IMSI. The use of the IMSI allows a staggering of the terminals to be paged into 10 groups, allowing for large DRX cycles.
In GSM ten paging groups exist so that only 10% (derived from the IMSI) of all terminals in a cell sending the paging message listen to a paging message. The network will change the paging groups in the next paging cycles so as to page all terminals.
3GPP TS 23.003 V7.1.0 (2006-09), chapter 2 defines actually valid subscriber identities such as IMSI, TMSI or P-TMSI. In accordance with one, more or all of the embodiments of the invention, an additional specific identifier such as E(mergency)-TMSI can be used, and may additionally be defined in this chapter. Instead of E(mergency)-TMSI any other name may be used for this specific identifier, provided that the format and content is such that the terminals can recognize the specific identifier as an indication to switch to the listening to the cell broadcast service.
Similar to a normal TMSI assigned to a terminal having local significance within a VLR and the area controlled by a VLR, or within an SGSN and the area controlled by an SGSN, the specific identifier such as E-TMSI may consist of 4 octets and can be coded using e.g. a full hexadecimal representation, with the structure and coding optionally chosen in order to meet local needs. The terminals may be informed on the specific identifier or identifiers either at the production stage or later by device management or the like, and store this specific identifier or identifiers either continuously or until replacement by other specific identifiers or cancellation.
The discrimination between a normal TMSI temporarily assigned to the terminal and the specific identifier may be done using some bits of the TMSI. An E-TMSI can be fixed and will thus not only temporarily be assigned, and can be valid in several terminals and cells so that the specific identifier will not change when roaming.
The specific identifier such as E-TMSI may be stored, similar to a normal TMSI, in the subscriber identity module, SIM, or in another storage of the terminals so that some or all terminals store the same specific identifier.
When receiving a paging message, the terminals check if the TMSI included in the paging message corresponds to the allocated TMSI or to the specific identifier.
Contrary to a normal TMSI, the specific identifier is not exclusively allocated to one terminal only but is identically set in several terminals or all terminals in accordance with one, more or all of the embodiments of the invention.
A terminal according to the present invention may be a mobile station or user equipment or any other type of mobile or stationary device.
Terminals such as mobiles in accordance with at least one of the embodiments of the invention now accept in paging messages the TMSI as before, and a specific identifier such as an E(emergency)-TMSI, which may also indicate a paging group allocation, and is generically accepted by all terminals. The E-TMSI uses a number pattern unique to indicate emergency situations. In order to avoid a disadvantage that 10% of all terminals in a paging area accepting this paging message (and in the next paging message the next 10% would come, and so on) would seek to establish a point to point connection to get the emergency message content delivered, thus leading to a rush to the resources likely to drive the system into an overload situation, the terminals are adapted to switch to the broadcast reception mode when detecting the specific identifier in the paging message, instead of establishing a point to point connection.
According to embodiments of the invention, the advantages of both GSM techniques; cell broadcast service and paging mechanism, can be combined into an efficient emergency provisioning system.
The invention thus introduces a specific identifier such as E-TMSI, as previously described, as a generic identifier for indicating an emergency situation. When a mobile receives a valid E-TMSI, it does not establish a PtP connection. Instead it switches to Cell-Broadcast mode and starts to monitor the Cell-Broadcast Notification channels for emergency information contents. The E-TMSI may be formed in different ways, but all are a priori known as E-TMSI to the terminal.
In accordance with one or more of the embodiments, not only one specific identifier such as only one E-TMSI may be provided but a group of two or more specific identifiers may be provisioned. The presence of a group of E-TMSI allows the following options.
A first specific identifier, first E-TMSI, will activate the Cell-Broadcast Mode in the terminal for an infinite time, i.e. the user has manually to disable the service. The terminal will hence start to continuously receive all cell broadcast messages until manual switch-off.
A second E-TMSI of another form or bit content will activate the Cell-Broadcast Mode in the terminal for a defined time (e.g. I hour) only, and then the terminal de-activates the cell-broadcast mode autonomously. This shall enable battery saving, and can be used if the emergency is predictably of a limited severity.
A third E-TMSI of another form or bit content can be used to segregate groups of users, e.g. medical personal, law enforcement staff etc. The use of this E-TMSI can be used to distribute specific information to specific groups.
When a group of specific identifiers exists, the network will select a specific identifier depending on the type of emergency or the content of the information to be broadcast, and will include the selected identifier into the paging message or messages transmitted in the cell or cells.
In this embodiment of the invention a group of TMSI codes is introduced, which are used as specific identifiers or E-TMSI. The terminal has a priori knowledge of the valid E-TMSI set and refrains from establishing an individual physical and logical Channel when receiving a paging message which includes one of these specific identifiers. Instead thereof, the reception of an E-TMSI in a paging message initiates the cell broadcast service support autonomously in all terminals which have received the specially formatted paging message. The terminals then monitor the Cell Broadcast Notification Channel, and receive the emergency message efficiently as a broadcast message.
Advantageously, all needed technology is already present. The introduction of one or a subset of new TMSI values, which will cause a pre-defined mobile behaviour, allows the temporary use of the cell broadcast service, which service is usually disabled due to power consumption reasons.
| Number | Date | Country | Kind |
|---|---|---|---|
| 07006867.1 | Apr 2007 | EP | regional |
This application is a continuation of U.S. patent application Ser. No. 14/519,893, filed Oct. 21, 2014 (U.S. Publication No. 2015/0038106); which is a continuation of U.S. patent application Ser. No. 12/450,608 (now U.S. Pat. No. 8,868,060), filed Oct. 2, 2009 with an assigned §371(c) acceptance date of Feb. 2, 2010; which is a U.S. National Stage Entry of PCT/EP2008/053915, filed Apr. 2, 2008; which claims priority to European Application No. 07006867.1, filed Apr. 2, 2007; all of which are incorporated by reference herein in their entirety.
| Number | Date | Country | |
|---|---|---|---|
| Parent | 14519893 | Oct 2014 | US |
| Child | 14685509 | US | |
| Parent | 12450608 | Feb 2010 | US |
| Child | 14519893 | US |