CA2680403C

Radio communication base station device and control channel arrangement method

Abstract

Provided is a radio communication base station device which can obtain a maximum frequency diversity effect of a downstream line control channel. The device includes: an RB allocation unit (101) which allocates upstream line resource blocks continuous on the frequency axis for respective radio communication mobile stations by the frequency scheduling and generates allocation information indicating which upstream line resource block has been allocated to which radio communication mobile station device; and an arrangement unit (109) which arranges a response signal to the radio communication mobile station device in the downstream line control channels distributed/arranged on the frequency axis while being correlated to the continuous upstream line resource blocks according to the allocation information.

CA2680403C, drawing sheet 1
Sheet 1 of 23

Term

1.5 yearsleft in the term

Expires 21 March 2028.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

103 claims: 50 independent, 53 dependent

  1. 1
    CLAIMS:1. Λ base station apparatus comprising: an allocating unit configured to allocate, to a mobile station, one or a plurality of resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;a mapping unit configured to map a response signal to a resource of downlink, the resource comprising a downlink control channel and being determined from an index of the allocated resource block;and a transmitting unit configured to transmit the mapped response signal to the mobile station, wherein: the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain;and the plurality of the resources are respectively comprised of a plurality of subcarrier groups which are inconsecutive in a frequency domain;and said mapping unit maps the response signal to the subcarrier group.
  2. 4
    The base station apparatus according to any one of claims 1- 3, wherein said mapping unit maps the response signal to a plurality of the resources distributed in the frequency domain. CA 2680403 2020-02-25
  3. 5
    The base station apparatus according to any one of claims 1-4 further comprising a spreading unit configured to spread the response signal, wherein said mapping unit maps the spread response signal to the resource. t
  4. 6
    The base station apparatus according to any one of claims 1- 5 further comprising a repetition unit configured to generate a plurality of same response signals with a repetition, wherein said mapping unit maps the plurality of the same response signals to a plurality of the resources distributed in the frequency domain, respectively.
  5. 7
    The base station apparatus according to any one of claims 1-6, wherein the response signal is carried on a hybrid ARQ indicator channel (HICH), and said mapping unit maps the response signal to the resource to which the hybrid ARQ indicator channel is mapped.
  6. 8
    The base station apparatus according to any one of claims 1-7, wherein said mapping unit maps a plurality of the response signals to the resource with code-multiplexing.
  7. 9
    The base station apparatus according to any one of claims 1-8, wherein the response signal is carried on a hybrid ARQ indicator channel (HICH), and said mapping unit maps a plurality of the response signals to the resource, to which a plurality of the hybrid ARQ indicator channels are mapped, with code-multiplexing.
  8. 10
    The base station apparatus according to any one of claims 1-9, wherein the index of the resource block is associated with the resource depending on a cell. CA 2680403 2020-02-25
  9. 11
    A mobile station apparatus comprising:a reception unit configured to receive, from a base station, allocation information indicating one or a plurality of allocated resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;and a determination unit configured to determine a resource of downlink, to which a response signal transmitted from the base station is mapped, from an index of the allocated resource block based on the allocation information, the resource of downlink comprising a downlink control channel and wherein: the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain;and the plurality of the resources are respectively comprised of a plurality of subcarrier groups which are inconsecutive in a frequency domain.
  10. 14
    The mobile station apparatus according to any one of claims 11 - 13, wherein the response signal is spread in the base station, and the spread response signal is mapped to the resource.
  11. 15
    The mobile station apparatus according to any one of claims 11- 14, wherein a plurality of same response signals are generated with a repetition CA 2680403 2020-02-25 in the base station, and the plurality of the same response signals are mapped to a plurality of the resources distributed in the frequency domain, respectively.
  12. 16
    The mobile station apparatus according to any one of claims Ills, wherein the response signal is carried on a hybrid ARQ indicator channel (HICH) in the base station, and the response signal is mapped to the resource to which the hybrid ARQ indicator channel is mapped.
  13. 17
    The mobile station apparatus according to any one of claims 1116, wherein a plurality of the response signals are mapped to the resource with code-multiplexed.
  14. 18
    The mobile station apparatus according to any one of claims 11- 17, wherein the response signal is carried on a hybrid ARQ indicator channel (HICH) in the base station, and a plurality of the response signals are mapped to the resource, to which a plurality of the hybrid ARQ indicator channels are mapped, with code-multiplexed.
  15. 19
    The mobile station apparatus according to any one of claims 11- 18, wherein the index of the resource block is associated with the resource depending on a cell.
  16. 20
    A method for determining a response signal resource comprising:receiving, from a base station, allocation information indicating one or a plurality of allocated resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;and determining a resource of downlink, to which a response signal transmitted from the base station is mapped, from an index of the allocated resource block based on the allocation information, the resource of downlink comprising a downlink control channel, CA 2680403 2020-02-25 wherein: the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain;and the plurality of the resources are respectively comprised of a plurality of subcarrier groups which are inconsecutive in a frequency domain.
  17. 22
    The method for determining a response signal resource according to any one of claims 20-21, wherein the response signal is mapped to a plurality of the resources distributed in the frequency .domain.
  18. 23
    The method for determining a response signal resource according to any one of claims 20 - 22, wherein the response signal is spread in the base station, and the spread response signal is mapped to tire resource.
  19. 24
    The method for determining a response signal resource according to any one of claims 20 - 23, wherein a plurality of same response signals are generated with a repetition in the base station, and the plurality of the same response signals are mapped to a plurality of the resources distributed in the frequency domain, respectively.
  20. 25
    The method for determining a response signal resource according to any one of claims 20 - 24, wherein the response signal is carried on a hybrid ARQ indicator channel (RICH) in the base station, and the response signal is mapped to the resource to which the hybrid ARQ indicator channel is mapped. CA 2680403 2020-02-25
  21. 26
    The method for determining a response signal resource according to any one of claims 20 - 25, wherein a plurality of the response signals are mapped to the resource with code-multiplexed.
  22. 27
    The method for determining a response signal resource according to any one of claims 20 - 26, wherein the response signal is carried on a hybrid ARQ indicator channel (HICH) in the base station, and a plurality of the response signals are mapped to the resource, to which a plurality of the hybrid ARQ indicator channels are mapped, with code-multiplexed.
  23. 28
    The method for determining a response signal resource according to any one of claims 20 - 27, wherein the index of the resource block is associated with the resource depending on a cell.
  24. 29
    A method for mapping a response signal comprising:allocating, to a mobile station, one or a plurality of resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;and mapping a response signal to a resource of downlink, the resource of downlink comprising a downlink control channel and being determined from an index of the allocated resource block, wherein: the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain;and the plurality of the resources are respectively comprised of a plurality of subcarrier groups which are inconsecutive in a frequency domain.
  25. 31
    The method for mapping a response signal according to any one of claims 29 - 30, wherein the response signal is mapped to a plurality of the resources distributed in the frequency domain.
  26. 32
    The method for mapping a response signal according to any one of claims 29-31, further comprising spreading the response signal, wherein the spread response signal is mapped to the resource.
  27. 33
    The method for mapping a response signal according to any one of claims 29 - 32, further comprising generating a plurality of same response signals with a repetition, wherein the plurality of the same response signals.are respectively mapped to a plurality of the resources distributed in the frequency domain.
  28. 34
    The method for mapping a response signal according to any one of claims 29 - 33, wherein the response signal is carried on a hybrid ARQ indicator channel (HICH), and the response signal is mapped to the resource to which the hybrid ARQ indicator channel is mapped.
  29. 35
    3 5. The method for mapping a response signal according to any one of claims 29 - 34, wherein a plurality of the response signals are mapped to the resource with code-multiplexing.
  30. 36
    3 6. The method for mapping a response signal according to any one of claims 29 - 35, wherein the response signal is carried on a hybrid ARQ indicator channel (HICH), and a plurality of the response signals are mapped to the resource, to which a plurality of the hybrid ARQ indicator channels are mapped, with code-multiplexing.
  31. 37
    3 7. The method for mapping a response signal according to any one of claims 29 - 36, wherein the index of the resource block is associated with the I resource depending on a cell. CA 2680403 2020-02-25
  32. 38
    An integrated circuit for controlling a process comprising:receiving, from a base station, allocation information indicating one or a plurality of allocated resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;and determining a resource of downlink, to which a response signal transmitted from the base station is mapped, from an index of the allocated resource block based on the allocation information, the resource of downlink comprising a downlink control channel, wherein: the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain;and the plurality of the resources are respectively comprised of a plurality of subcarrier groups which are inconsecutive in a frequency domain.
  33. 39
    An integrated circuit for controlling a process comprising:allocating, to a mobile station, one or a plurality of resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;and mapping a response signal to a resource of downlink, the resource of downlink comprising a control channel and being determined from an index of the allocated resource block, wherein: the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain;and the plurality of the resources are respectively comprised of a plurality of subcarrier groups which are inconsecutive in a frequency domain;and the response signal is mapped to the subcarrier group.
  34. 40
    A base station apparatus comprising:an allocating unit configured to allocate, to a mobile station, one or a plurality of resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;CA 2680403 2020-02-25 a mapping unit configured to map a response signal to a resource of downlink, the resource comprising a downlink control channel and being determined from an index of the allocated resource block;and a transmitting unit configured to transmit the mapped response signal to the mobile station, wherein the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain.
  35. 41
    A mobile station apparatus comprising:a reception unit configured to receive, from a base station, allocation information indicating one or a plurality of allocated resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;and a determination unit configured to determine a resource of downlink, to which a response signal transmitted from the base station is mapped, from an index of the allocated resource block based on the allocation information, the resource of downlink comprising a downlink control channel, wherein the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain.
  36. 42
    A method for mapping a response signal comprising:allocating, to a mobile station, one or a plurality of resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;and mapping a response signal to a resource of downlink, the resource comprising a downlink control channel and being determined from an index of the allocated resource block, wherein the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain.
  37. 43
    A method for determining a response signal resource comprising:CA 2680403 2020-02-25 receiving, from a base station, allocation information indicating one or a plurality of allocated resource block(s) of uplink, the resource blocks being consecutive in a frequency domain;and determining a resource of downlink comprising a downlink control channel, to which a response signal transmitted from the base station is mapped, from an index of the allocated resource block based on the allocation information, wherein the indices of a plurality of the consecutive resource blocks are respectively associated with a plurality of the resources which are different in a frequency domain.
  38. 44
    A base station apparatus comprising:a processor configured to: allocate, to a mobile station, a plurality of uplink resource block(s), the resource blocks being consecutive in a frequency domain and indices of the plurality of consecutive resources blocks being respectively associated with a plurality of resources of downlink which are different in a frequency domain;map an ACK or NACK signal for uplink data to one of die resources of downlink, the one of the resources being determined from an index of the allocated resource block within the indices of the plurality of consecutive resource blocks a transmitter configured to transmit the mapped ACK or NACK signal to the mobile station.
  39. 57
    A mobile station apparatus comprising:a receiver configured to receive, from a base station, allocation information indicating a plurality of uplink resource block(s), the resource blocks being consecutive in a frequency domain;and indices of the plurality of consecutive resource blocks being respectively associated with a plurality of resources of downlink which are different in a frequency domain;and a processor configured to determine, based on the allocation information, one of the resources of downlink, to which an ACK or NACK signal for uplink data is mapped, from an index of the associated resource block within the indices of the plurality of consecutive resource blocks, the ACK or NACK signal being received from the base station.
  40. 69
    A method for mapping a response signal comprising:allocating, with a processor, to a mobile station, one or a plurality of resource block(s) of uplink;and mapping, with a processor, ACK or NACK signals respectively associated with at least two uplink resource blocks that are consecutive in the frequency domain to different groups of frequency bands.
  41. 70
    A mobile station apparatus comprising:a reception unit adapted to receive, from a base station, allocation information indicating uplink resource blocks, which are consecutive in a frequency domain;and a mapping specifying unit (209) adapted to specify an ACK/NACK channel, to which a response signal transmitted from the base station in a downlink is mapped, based on the allocation information, wherein ACK/NACK channels respectively associated with at least two uplink resource blocks that are consecutive in the frequency domain are respectively mapped in a distributed manner to different groups of frequency bands.
  42. 72
    The mobile station apparatus according to any one of claims 70 71, wherein each group of the frequency bands comprises subcarrier groups, which are inconsecutive in a frequency domain and each of which comprises consecutive subcarriers.
  43. 73
    The mobile station apparatus according to any one of claims 70 72 further comprising a transmission unit adapted to transmit data using the uplink resource blocks allocated based on the allocation information.
  44. 74
    The mobile station apparatus according to any one of claims 70 73, wherein the ACK/NACK channel is a hybrid ARQ indicator channel (HICH).
  45. 75
    The mobile station apparatus according to any one of claims 70 74, wherein mapping patterns of the ACK/NACK channels in different cells are different.
  46. 76
    A method for specifying an ACK/NACK channel in a downlink comprising:receiving, from a base station, allocation information indicating uplink resource blocks, which are consecutive in a frequency domain;and specifying an ACK/NACK channel, to which a response signal transmitted from die base station is mapped, based on the allocation information, wherein ACK/NACK channels respectively associated with at least two uplink resource blocks that are consecutive in the frequency domain are respectively mapped in a distributed manner to different groups of frequency bands.
  47. 82
    A base station apparatus comprising:an allocating unit adapted to allocate, to a mobile station, uplink resource blocks, which are consecutive in a frequency domain, a mapping unit adapted to map a response signal to an ACK/NACK channel for transmitting the response signal in a downlink, the ACK/NACK channel being associated with an uplink resource block;and a transmitting unit adapted to transmit the mapped response signal to the mobile station, wherein ACK/NACK channels respectively associated with at least two uplink resource blocks that are consecutive in the frequency domain are respectively mapped in a distributed manner to different groups of frequency bands. CA 2680403 2020-02-25
  48. 90
    A method for mapping a response signal in a downlink comprising:allocating, to a mobile station, uplink resource blocks, which are consecutive in a frequency domain;and mapping a response signal to an ACK/NACK channel for transmitting the response signal, the ACK/NACK channel being associated with an uplink resource block, wherein ACK/NACK channels respectively associated with at least two uplink resource blocks that are consecutive in the frequency domain are respectively mapped in a distributed manner to different groups of frequency bands.
  49. 94
    An integrated circuit for controlling a process comprising:receiving, from a base station, allocation information indicating uplink resource blocks, which are consecutive in a frequency domain;and CA 2680403 2020-02-25 specifying an ACK/NACK channel, to which a response signal transmitted from the base station in a downlink is mapped, based on the allocation information, wherein ACK/NACK channels respectively associated with at least two uplink resource blocks that are consecutive in the frequency domain are respectively mapped in a distributed manner to different groups of frequency bands.
  50. 98
    An integrated circuit for controlling a process comprising:allocating, to a mobile station, uplink resource blocks, which are consecutive in a frequency domain;mapping a response signal to an ACK/NACK channel for transmitting the response signal in a downlink, the ACK/NACK channel being associated with an uplink resource block;and transmitting the mapped response signal to the mobile station, characterized in that: CA 2680403 2020-02-25 ACK/NACK channels respectively associated with at least two uplink resource blocks that are consecutive in the frequency domain are respectively mapped in a distributed manner to different groups of frequency bands;ACK/NACK channels respectively associated with uplink resource blocks that are nonconsecutive in the frequency domain are respectively mapped to a same group of the frequency bands.
Independent claims50