The present invention relates to a solution for reducing the signalling traffic in a radio access network in an overloaded situation where several user equipments are connected to the radio access network.
The present invention is related to solutions for handling high signalling load in an access network in cellular connections due to smartphones in planned or unplanned events like football matches or concerts in stadium or gathering of thousand people in squares, what causes congestion in terms of usage of the cellular network the devices are connected to. During events the massive concentration of smartphone presents challenges in terms of the provision of circuit-switched and packet-switched services with a suitable quality for the end user. Such a concentration creates a huge amount of requested 3G packet-switched connection. Each device or user equipment requires control signalling to maintain its data connection, even when no user data is sent. This fact overloads the network and makes user data transmission very slow. The overload in control channels and signalling traffic represent a problem and it is necessary to remove or reduce such traffic.
Some solutions today are related to installing more capacity and to further off-load to a Wi-Fi operator. The problem in these solutions is that the Wi-Fi layer also becomes congested in the same way as the 3G and 2G layers.
Other solutions propose tethering which allows mobile devices to share their Internet connection over USB, Bluetooth, or WiFi like MiFi (MiFi stands for “My Wi-Fi”; a MiFi device can be connected to a mobile phone cellular carrier and provide internet access for up to ten devices). However, these solutions require a manual configuration step such as specifying a WiFi network to connect to, sharing a password, etc, and usually manual establishment.
Other solutions related to solve the described problem are Access network discovery and selection function (ANDSF) and closed subscriber group (CSG):
These solutions are focused on the network side by for example providing additional Cellular or Femto or Wifi capacity where it is needed a multi-bearer strategy, for example.
Solutions concerned with WLAN (not cellular) connections are also described in U.S. Pat. No. 8,081,612, US 2012/0106475, ES2301420, but there seems to be no discussion of reducing control signalling.
The present invention provides a solution for the aforementioned problem by a method for managing the access of a group of user equipment according to claim 1, a method for establishing a group of user equipment performed by a user equipment according to claim 12, a computer program product, according to claim 13, a user equipment according to claim 14 and a radio network controlling entity according to claim 15.
In a first aspect of the invention there is provided a method for managing the access of a group of user equipments to a radio access network implemented on a system comprising:
The proposed solution is a method for grouping user equipments to use the connection from only one master user equipment to the base station so that only one set of control signalling is required. The other slave user equipments send or receive data via a PAN, for example a WiFi connection with the master user equipment. The grouping of devices to share a base station connection is performed automatically without user intervention. This is in contrast to known “tethering” arrangements for sharing a 3G or 4G data connection of one device with other devices by a WiFi connection.
The main idea is to reduce control signalling by establishing a single connection with a base station for a plurality of user equipments.
Taking into account that current user equipments such as smartphones or tablets are able to open at the same time a Wi-Fi or Bluetooth and a 3G or LTE connection, the solution is advantageous in situations where there is congestion in massive events. In these situations a number of UEs (User Equipment, e.g. mobile phones) are automatically bound together via Wi-Fi or bluetooth, whilst their uplink and downlink traffic are routed towards a master UE, and such a master UE is the only one opening a connection with the 3G network.
In contrast with the prior art where normal Mi-Fi connections are opened, this solution allows an automatic mechanism capable to manage a high number of user equipments, triggered by specific conditions, automatically activated and deactivated.
One of the advantages which results from the proposed method is the reduction of policy management from the network.
Even when communication for opening or closing connections towards the network by user equipments establishing groups generates signalling over the cellular network, the resulting signalling towards only one user equipment in a group is more advantageous than the case of not creating groups so that the method is clearly advantageous for a situation of congestion, for example, since the problem is not the quantity of messages or data for one user equipment but to keep several signalling connections opened with several user equipments.
In a second aspect of the invention there is provided a method for establishing a group of user equipment performed by a user equipment comprising the steps of:
The user equipments in the system are adapted to carry out a method for establishing a group of user equipments in such a way that interaction with the network and other user equipments in the cluster of cells is performed. Advantageously the method allows unloading signalling charge from the network as the user equipments in the cluster of cells communicate to each other through a personal area network.
In a third aspect of the invention there is provided a computer program product, preferably a mobile application, adapted to carry out a method according to the second aspect of the invention.
In a fourth aspect of the invention there is provided a user equipment adapted to carry out a method according to the second aspect of the invention.
In a fifth aspect of the invention there is provided a radio network controlling entity adapted to carry out step a) of a method according to the first aspect of the invention.
These and other characteristics and advantages of the invention will become clearly understood in view of the detailed description of the invention which becomes apparent from a preferred embodiment of the invention, given just as an example and not being limited thereto, with reference to the drawings.
Once the object of the invention has been outlined, specific non-limitative embodiments are described hereinafter.
A method according to the invention is performed on a system as the one shown in
In
Before establishment of the group, the user equipments are in connection to the radio network controller (RNC/NodeB) through the radio access network (RAN). This situation is represented in
Following the different steps in a method according to the invention, the different steps can be carried out in different ways according to the following particular embodiment:
The triggering, as explained, can be launched after several criteria. In a particular embodiment the triggering condition is the determination of a congestion situation. By congestion situation it is understood the situation where a high number of user equipments (UE) requiring control signalling to maintain its data connection overloads the network and makes user data transmission very slow. In such congestion situation it is necessary to remove or reduce such traffic. On the other hand, the proposed solution is advantageous also in situations where a lot of user equipments (UE) stay for a considerable period of time, such as seconds or milliseconds, with many connections towards the network. Some of the examples are: stadiums, trade fair or demonstrations. In these event scenarios the demand from users in terms of throughput is not satisfied and therefore they accumulate data in a data buffer in queue to be sent or received. In a particular embodiment said data buffer size is taken into account, with a threshold, for the users to trigger the establishment of a group of user equipment (GUE).
Determining a congestion situation is performed, in a particular embodiment, by the radio access network. The radio access network (RAN) system comprises a radio network controller entity (RNC/NodeB), like the one represented in
In a particular embodiment determining a congestion situation is performed by at least one user equipment (UE) comprising GPS coordinates detection means (GPS) in communication to an element (2) in a network (3), preferably the element being a server (2) in the Internet (3). This situation is represented in
In a particular embodiment the triggering condition is performed by the user equipment (UE) determining that
In a particular embodiment, determining a congestion situation is performed by at least one of the user equipments (UE) which comprises GPS coordinates detection means (GPS) and stored information in the user equipment (UE) about terrestrial areas where congestion is likely to happen in a predetermined time frame, so that the user equipment (UE) determines congestion if it:
The mentioned alternatives for triggering a command for forming a group of user equipments (GUE) are
Once a triggering condition is determined, the method according to the invention comprises connecting a plurality of user equipments (UE) through the means for establishing a personal area network (PAN) and creating a personal area network (PAN). In a particular embodiment the means for creating a personal area network (PAN) in the user equipment (UE) are closed, so that a previous step is performed, being opening the means for establishing a personal area network (PAN), preferably Bluetooth or WiFi or LTE direct, and then to establish a personal area network (PAN) among the plurality of user equipments (UE).
In a particular embodiment, for establishing a group of user equipments (GUE) an identification step is performed in which candidates are selected for belonging to the group of user equipment (GUE), among the plurality of user equipments (UE). Once the candidates for establishing a group (GUE) are selected or identified among several user equipment (UE), there is performed a further step which comprises accepting, by a first user equipment (UE), a binding proposal from a second user equipment (UE) provided one of the following alternatives:
In a particular embodiment, the candidates are identified depending on at least one of the following criteria:
When forming a group of users according to RSCP/RSRP level it is for example performed a selection of users with high difference in RSCP/RSRP to increase gains in terms of power since slave user equipments (SUE) with worse RSCP/RSRP consume more power. One way e.g. is to try first users with more than 3 dBs difference in RSCP/RSRP.
In a particular embodiment a maximum number of user equipment (UE) which can belong to a group of user equipment (GUE) is pre-established.
Further to the establishment of a group (GUE) a master is selected. In a particular embodiment selecting a master user equipment (MUE) is performed by the group of user equipments (GUE) in base of one, or a combination, of the following criteria:
In a particular example the selection is to use 10 ms TTI. Advantageously this selection allows consuming less resources than a 2 ms HSUPA capable user equipment (UE) which allows higher throughput. There is a compromise between throughput and consumption.
In a particular embodiment during congestion events Dual Carrier is deactivated in mobile phones as it consumes more resources than single carrier and causes more congestion issues.
In a particular embodiment the personal area network (PAN) through which the user equipment (UE) communicate to each other is a WiFi network. In a particular embodiment routing traffic is performed by the master user equipment (MUE) acting as a Wi-Fi access point with reference to the other slave user equipments (SUE).
In a particular example the communication among user equipments (UE) is performed automatically by having a pre-established Service Set Identifier (SSID) that is recognized by the user equipments (UE) making periodical polling on available Wi-Fi connections from other user equipments (UE) within a WiFi coverage area. Advantageously this allows the user equipments (UE) to establish the personal area network automatically without asking for a selection of a SSID or a password.
In a particular embodiment, as data traffic belonging to slave user equipments (SUE) is routed through the master (MUE) the data are ciphered using a ciphering key only available in each slave user equipment (SUE).
In a particular embodiment the master user equipment (MUE) opens a Radio Access Bearer (RAB)/Packet Data Protocol (PDP) context with the 3G/4G (LTE) layer to transmit or receive the packets to be sent or received by all the slave user equipments (SUE).
In a particular embodiment synchronization is maintained between the slave user equipments (SUE) and the master user equipments (MUE) via the personal area network (PAN), preferably WiFi, by sending acknowledgements (7) from the slave user equipments (SUE) to the master user equipments (MUE) every predetermined timeframe, or vice versa, by sending acknowledgements (7) from the master user equipments (MUE) to the slave user equipments (SUE) every predetermined timeframe and if acknowledgements (7) are not received either by the slave user equipment (SUE) or the master user equipment (MUE) at least one of the following steps is performed:
A representation of such situation is shown in
In a particular embodiment the slave user equipment (SUE) which does not maintain synchronization with a master user equipment (MUE) in its group (GUE) can rejoin the previous group (GUE) or join a new group; but if a second loss of synchronization happens this blocks said slave user equipment (SUE) to join a group within a pre-established timeframe. Advantageously, this prevents user equipments (UE) which are prone to failure from participating in creating and breaking up groups which overloads the network and other user equipments (UE) around.
In a particular embodiment the master (MUE) connection with the radio access network (RAN) is closed or transferred in case of:
Advantageously this allows the master user equipment (MUE) to save battery, by changing or swapping the role of being master to a different user equipment (UE) in the group (GUE). In a particular embodiment this task is performed periodically so that several user equipments (UE) in the group (GUE) act as master user equipment (MUE).
In a particular embodiment, data security or privacy when the slave user equipment (SUE) data passes through the master user equipment (MUE) is managed by having a secure connection between the slave (SUE) and the master (MUE).
A system according to the invention comprises
The radio access network is part of a telecommunication system. Conceptually, it resides between a device such as a mobile phone, a computer, or any remotely controlled machine and a core network (CN). In the present description mobile phones and other wireless connected devices are called user equipments (UE).
In the present invention it is considered that a base transceiver station (BTS) is part of the elements comprised in a general system called radio access network (RAN).
In a particular embodiment the system comprises a radio network controller or RNC/eNodeB.
A user equipment (UE) according to the invention is adapted to carry out at least steps b) to f) of a method according to the invention. As explained before, a plurality of user equipments (UE) establishes a group of user equipments (GUE) by communicating to each other through a personal area network (PAN) which can be created after determining, in a particular example, a congestion situation.
In a particular example, in which the maximum number of user equipments (UE) in a group (GUE) is three, the following steps are carried out by one single user equipment (UE):
In a particular embodiment the user equipments (UE) are mobile phones, or the so called smartphones.
In a particular embodiment the user equipments (UE) are adapted to run a computer program product, preferably a mobile application, adapted to
Number | Date | Country | Kind |
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P201331289 | Aug 2013 | ES | national |