Abstract: A computer implemented data processing system for using customer relationship management (CRM) data exhibiting unique user identifiers in a cellular network for creating geo-statistical representations of the users. The system is arranged to: repeatedly identify all network-connected devices which are both active and idle in each location area using the unique identifier; repeatedly create a table for all location areas, each table exhibiting: location area identifier, unique user identifier, time of inflow to the location area, time of outflow from the location area; and differentiate table of time N?1 over table of time N thereby detecting inflow outflow quantities of unique identifiers for each location area; decipher the difference table by the authentication center of the network; analyze the deciphered tables using CRM profiles; and join over time, the deciphered tables with corresponding location area thereby creating at least one GIS data layer.
Abstract: A computer implemented data processing system for using customer relationship management (CRM) non-exhibiting unique user identifiers in a cellular network for creating geo-statistical representations of the users.
Abstract: A computer implemented data processing system for using customer relationship management (CRM) data exhibiting unique user identifiers in a cellular network for creating geo-statistical representations of the users. The system is arranged to: repeatedly identify all network-connected devices which are both active and idle in each location area using the unique identifier; repeatedly create a table for all location areas, each table exhibiting: location area identifier, unique user identifier, time of inflow to the location area, time of outflow from the location area; and differentiate table of time N?1 over table of time N thereby detecting inflow outflow quantities of unique identifiers for each location area; decipher the difference table by the authentication center of the network; analyze the deciphered tables using CRM profiles; and join over time, the deciphered tables with corresponding location area thereby creating at least one GIS data layer.