EP1549093A2

Apparatus and method for allocating subchannels adaptively according to frequency reuse rates in an orthogonal frequency division multiple access system

Abstract

An apparatus and method for adaptively allocating subchannels according to frequency reuse rates in an OFDMA system are provided. To allocate one or more subchannels to one or more mobile stations (MS), information related to an optimum frequency reuse factor (FRF) and a modulation scheme is received from the plurality of MSs, the number of subchannels required for each FRF is calculated according to the received information, subchannels are allocated to the base station (BS) for each FRF, based on the calculated subchannel numbers from the BS and neighboring BSs, and the allocated subchannels are allocated to the MSs.

EP1549093A2, drawing sheet 1
Sheet 1 of 23

Term

Term ended

Projected expiry passed 23 December 2024, 1.8 years ago.

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16 claims: 10 independent, 6 dependent

  1. 1
    A method of allocating one or more subchannels to one or more mobile stations in an orthogonal frequency division multiple access mobile communication system in which a first base station communicates with a plurality of mobile stations within a cell area of the base station and a radio network controller controls radio resources for a plurality of base stations including the first base station, the method comprising the steps of:receiving from the plurality of mobile stations information related to an optimum frequency reuse factor and a modulation scheme;calculating the number of subchannels required for each frequency reuse factor according to the received information;allocating subchannels to the first base station for each frequency reuse factor, based on the calculated subchannel numbers from the first base station and neighboring base stations;and allocating the allocated subchannels to the mobile stations.
  2. 4
    The method of one of claims 1 to 3, wherein the calculation step comprises the step of calculating the number of subchannels required for each frequency reuse factor according to the number of information bits requested by the mobile stations and modulation schemes available to the mobile stations.
  3. 5
    The method of one of claims 1 to 4, wherein the step of allocating subchannels to the base station for each frequency reuse factor comprises the step of allocating the subchannels in an order of the highest frequency reuse factor to the lowest frequency reuse factor.
  4. 6
    The method of one of claims 1 to 4, wherein the step of allocating subchannels to the first base station for each frequency reuse factor comprises the step of allocating subchannels to the first base station for each frequency reuse factor according to a maximum subchannel number requested for the same frequency reuse factor, taking into account the number of subchannels requested by the neighboring base stations for each frequency reuse factor.
  5. 7
    The method of one of claims 1 to 4, wherein the step of allocating the allocated subchannels to the mobile stations comprises the step of allocating the subchannels to mobile stations having good channel characteristics for the subchannels with priority.
  6. 8
    An apparatus for allocating one or more subchannels to one or more mobile stations in an orthogonal frequency division multiple access mobile communication system in which a first base station communicates with a plurality of mobile stations within a cell area of the base station and a radio network controller controls radio resources for a plurality of base stations including the first base station, the apparatus comprising:a base station subchannel allocator for receiving from the plurality of mobile stations information related to an optimum frequency reuse factor and a modulation scheme, calculating the number of subchannels required for each frequency reuse factor according to the received information, and allocating subchannels to the first base station for each frequency reuse factor, based on the calculated subchannel numbers from the first base station and neighboring base stations;and an mobile station subchannel allocator for allocating the allocated subchannels to the mobile stations.
  7. 13
    The apparatus of one of claims 8 to 12, wherein the base station subchannel allocator is adapted for calculating the number of subchannels required for each frequency reuse factor based on the number of information bits requested by the mobile stations and modulation schemes available to the mobile stations.
  8. 14
    The apparatus of one of claims 8 to 12, wherein the base station subchannel allocator is adapted for allocating subchannels on a per-frequency reuse factor basis to the first base station in an order of the highest frequency reuse factor to the lowest frequency reuse factor.
  9. 15
    The apparatus of one of claims 8 to 12, wherein the base station subchannel allocator is adapted for allocating subchannels to the first base station for each frequency reuse factor according to a maximum subchannel number requested for the same frequency reuse factor, taking into account the numbers of subchannels requested by the neighboring base stations for each frequency reuse factor.
  10. 16
    The apparatus of one of claims 8 to 12, wherein the mobile station subchannel allocator is adapted for allocating the subchannels to mobile stations having good channel characteristics for the subchannels with priority.