EP1536659B1

A method of optimising exploitation of radio resources utilised during access procedures in cellular communication systems, and corresponding system

Abstract

This record has no abstract on file.

EP1536659B1, drawing sheet 1
Sheet 1 of 48

Term

Term ended

Expired 28 November 2023, 2.8 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

11 claims: 5 independent, 6 dependent

  1. 1
    A method of optimising exploitation of radio resources utilised during access phases in a cellular communication system in which adjacent cells (CA, CB) dynamically contend each other the same resources and, during an access phase, a bi-directional signalling exchange between terminals (UE1a...UEx) requesting access and control units (BSCa, BSCb) of the cells (CA, CB) takes place over common control physical channels, which are at least partly allocated on radio resources also used for traffic and are arranged in one or more groups having an initial configuration, corresponding to an initial allocation of radio resources and established in an initialisation phase of the cell (CA, CB), said control units (BSCa, BSCb) continuously monitoring the interference level of said radio resources, the method being characterised in that , during the life of the cell and based on the evolution of the interference levels of the radio resources on which said common control physical channels are located, the groups of common control physical channels are automatically reconfigured in order to follow fluctuations of radio resources sharing among said adjacent cells, the reconfiguration being carried out by shifting common control physical channels which are located on radio resources exhibiting a high level of interference to radio resources exhibiting a lower level of interference.
  2. 4
    The method according to any of claims 1 to 3, wherein said reconfiguration is carried out so as to produce a configuration of the common control physical channels including the same number of groups of common control physical channels as the initial configuration.
  3. 5
    The method according to any of claims 1 to 4, wherein said reconfiguration is carried out so as to minimise the differences relative to the initial configuration or an immediately preceding configuration.
  4. 6
    The method according to any of claims 1 to 5, wherein said reconfiguration comprises one or more of the following steps:a) keeping unchanged the groups wholly consisting of common control physical channels located on radio resources exhibiting an interference level below said interference threshold (101, 102);b) for the groups comprising at least one common control physical channel located on a radio resource exhibiting an interference level above said interference threshold, attempting (103) re-allocation of said at least one common control physical channel onto a respective at least one radio resource exhibiting an interference level below said interference threshold, and including the groups resulting from a successful re-allocation into the new configuration (104, 105);c) merging into a new group (106) common control physical channels located on radio resources exhibiting an interference level below said interference threshold and belonging to groups left unprocessed after step b), so as to build groups wholly consisting of common control physical channels located on radio resources exhibiting an interference level below said interference threshold, and including the groups so built into the new configuration (107, 108);d) keeping unchanged the common control physical channels groups left unprocessed by steps a) to c) (109);and e) merging the remaining common control physical channels into groups (112);the process ending when said number (Ng) of groups is attained.
  5. 10
    A cellular communication system in which adjacent cells (CA, CB) dynamically contend each other the same radio resources, wherein, during an access phase, terminals (UE1a...UEx) requesting access and control units (BSCa, BSCb) of the cells (CA, CB) carry out a bi-directional signalling exchange over common control physical channels, which are at least partly allocated on radio resources also used for traffic and are arranged in one or more groups having an initial configuration established in an initialisation phase of the cell (CA, CB), and wherein said control units (BSCa, BSCb) include means to continuously monitor the interference level on said radio resources, the system being characterised in that said control units (BSCa, BSCb) also include means to automatically reconfigure, during the life of the cell (CA, CB) and based on the evolution of the interference levels of the radio resources allotted to said common control physical channels, the groups of common control physical channels in order to follow fluctuations of radio resources sharing among said adjacent cells (CA, CB), by shifting common control physical channels which are located on radio resources exhibiting a high level of interference to radio resources exhibiting a lower level of interference.