Method for scheduling paging in telecommunication network in accordance with the telecommunication systems need to process paging camped user equipment (UE) for mobile terminated (MT) service as: call, downlink data, short message service (sms), multimedia message service (mms). In this case, this method focus is in 4G network but it is also use for 2G, 3G, 5G and next generation network.
Global System for Mobile Communications (GSM) is a cellular network, which means that mobile phones connect to it by searching for cells. The base station is physical device which makes the coverage area in which service is provided for UE to communicates with the telecommunication network by radio waves through local antenna (
UE in GSM network can use the service by camping to a cell of a base station and is located in network base on base station's position and TA. When the system needs to page user equipment, they can process paging on:
To ensure paging success rate (PSR), the common method for scheduling paging as the below:
The base station received paging message from network will send message paging to all of UE in station coverage. All of UE in that coverage listen to the paging message from network and respond to the network if information in message is matched with information in the UE. So that, the UE will lose a little energy to process a message even though the content inside the message is not its own. Therefore, applying method 3 can achieve the best PSR, but the system performance is very high and all of the UE in the network will lose power faster. Applying method 1 is also not good because the system often retries to page UE, therefor PSR is low. Method 2 is often used because the PSR is acceptable and the system performance is not high, the UE doesn't consume too much energy for processing paging message (if the number of base station in TA is not much).
This method is given to reduce the paging message but still get the high PSR:
This method is described as the below:
R=6378137 (unit: m,Earth's Radius)
DeltaLon=(Lon2−Lon1)*π/180
DeltaLat=(Lat2−Lat1)*π/180
Lat1Ra=Lat1*π/180
Lat2Ra=Lat2*π/180
A=(sin(DeltaLat/2)){circumflex over ( )}2+cos(Lat1)*cos(Lat2)*(sin(DeltaLon/2){circumflex over ( )}2
C=2*a tan(sqrt(A),sqrt(1−A))
Distance=R*C
Using in module to Manage ID of Mobility Management Entity—MME.
Compare between the system using method 2 above and the system apply the inventive method (both systems manage 1 TA including 137 base stations)
While a preferred embodiment of the present invention has been shown and described, it will be apparent to those skilled in the art that many changes and modifications may be made without departing from the invention in its broader aspects. The appended claims are therefore intended to cover all such changes and modifications as fall within the true spirit and scope of the invention.
Number | Date | Country | Kind |
---|---|---|---|
1-2020-06186 | Oct 2020 | VN | national |