EP2869622A1

Method and device for locating network activity in cellular communication networks

Abstract

A method and a device for optimizing the assignation of network activity of a cellular communications network to land areas in a simple and accurate way. This technique allows representing the activity of a cellular network on a set of tiles in a grid covering a certain land area, instead of representing it associated to antenna cells that might or might not overlap. The activity dispersed and assigned to nonoverlapping grid tiles is much simpler and clearer to understand and allows visualizing how the network activity is distributed over the space and how it varies along time allowing therefore an efficient network design and management optimization.

EP2869622A1, drawing sheet 1
Sheet 1 of 13

Term

7.1 yearsto projected expiry

Projected expiry 5 November 2033, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 15 independent, 0 dependent

  1. 1
    A method for assigning network activity of a cellular communications network to land areas of a certain area of interest, said cellular communications network serving a group of cells each one being served by at least one antenna, the method comprising the following steps performed by an electronic device:a) For each cell of the group of cells, obtaining cell information and information of the cell coverage as a function of the distance from the antenna, where said cell information includes location information of the antenna serving the cell b) Dividing said area of interest into a set of adjacent non intersecting zones called tiles and assigning to each tile a land use factor, being said land use factor a parameter which indicates the portion of the tile area where it is possible to have network activity c) For each cell of the group of cells, defining a cell coverage polygon d) For each cell coverage polygon, defining one or more sub-polygons according to the information of the cell coverage as a function of the distance from the antenna and assigning to each sub-polygon a distance factor being said distance factor a parameter which indicates the portion of the cell activity that it is assigned to each sub-polygon e) Calculating intersection areas between each tile and each cell sub-polygon and weighting each intersection area by the tile land use factor of the correspondent tile. f) For each tile and each cell, determining a dispersion of the network activity of said cell in said tile based on the weighted intersection areas between said tile and the sub-polygons of said cell and the distance factor assigned to each sub-polygon of said cell.
  2. 2
    A method according to any of the previous claims further comprising, creating a table with contains, for all the combination of cells and tiles that have an intersection, the dispersion value for said cell and said tile.
  3. 3
    A method according to any of the previous claims further comprising:obtaining the network activity of a particular tile by, for each cell with any of its sub-polygons having an intersection with the tile, applying the dispersion value for said tile and for said cell to the network activity of said cell and adding the obtained results for all the cells with any of its sub-polygons having an intersection with the tile.
  4. 4
    A method according to any of the previous claims where step of determining the dispersion of the network activity for each tile and each cell comprises:f1) For each tile and each cell, calculating a partial dispersion factor for each sub-polygon of said cell as the weighted intersection area between said tile and said sub-polygon multiplied by the distance factor of said sub-polygon and divided by the sum of all the weighted intersection areas of said sub-polygon of said cell with any tile f2) Calculating the dispersion of the network activity for each combination of tile and cell as the sum of the partial dispersion factors of all the sub-polygons of said cell which intersects with said tile.
  5. 5
    A method according to any of the previous claims where the cell information includes also at least one of the following:a cell identifier, type of the cell, type of antenna, type of technology used by the cellular communications network, azimuth and beam width.
  6. 6
    A method according to any of the previous claims where the electronic device is installed in one node of the cellular communications network.
  7. 7
    A method according to any of the previous claims where the coverage polygons are generated using at least part of the cell information obtained in step a)
  8. 8
    A method according to any of the previous claims where in the step of defining the cell coverage polygons, Voronoi polygons are used or circular sectors polygons are used.
  9. 9
    A method according to any of the previous claims where said coverage polygons are generated according to the cell type of antenna.
  10. 10
    A method according to any of the previous claims where said coverage polygons are divided in layers according to different types of technology used in the cells.
  11. 11
    A method according to any of the previous claims where if, according to the information of coverage as a function of the distance, it is considered that the coverage of a certain cell is constant in all the cell independent on the distance to the antenna, only one sub-polygon is defined for said cell, being said sub-polygon equal to the cell coverage polygon and it is assigned a distance factor of 1 to said sub-polygon.
  12. 12
    A method according to any of the previous claims where the cell information and the information of the cell coverage as a function of the distance from the antenna are transmitted to the electronic device by a node of the cellular communications network.
  13. 13
    An electronic device for assigning network activity of a cellular communications network to land areas of a certain area of interest, where said area of interest is divided into a set of adjacent non intersecting zones called tiles, said cellular communications network serving a group of cells each one being served by at least one antenna, the electronic device comprising:- Means for, for each cell of the group of cells, obtaining cell information and information of the cell coverage as a function of the distance from the antenna, where said cell information includes location information of the antenna serving the cell - Means for assigning to each tile a land use factor, being said land use factor a parameter which indicates the portion of the tile area where it is possible to have network activity - Means for, for each cell of the group of cells, defining a cell coverage polygon - Means for, for each cell coverage polygon, defining one or more sub-polygons according to the information of the cell coverage as a function of the distance from the antenna and assigning to each sub-polygon a distance factor being said distance factor a parameter which indicates the portion of the cell activity that it is assigned to each sub-polygon - Means for calculating intersection areas between each tile and each cell sub-polygon and weighting each intersection area by the land use factor of the correspondent tile. - Means for, for each tile and each cell, determining a dispersion of the network activity of said cell in said tile based on the weighted intersection areas between said tile and the sub-polygons of said cell and the distance factor assigned to each sub-polygon of said cell.
  14. 14
    A computer program product comprising computer-executable instructions for performing the method according to any of the claims 1-12, when the program is run on a computer.
  15. 15
    A digital data storage medium encoding a machine-executable program of instructions to perform a method according to any of the claims 1-12.