CA2648166C

Apparatus and method for supporting relay service in a multi-hop relay broadband wireless access communication system

Abstract

An apparatus and method for configuring a subframe to support a relay service in a multi-hop relay BWA communication system are provided. The apparatus includes at least one of a BS-MS link subframe, a primary RS-MS link subframe, and a BS-secondary RS link subframe are configured in a first period of the subframe, and at least one of a RS-primary RS link subframe, an RS-RS link subframe, and a secondary RS-MS link subframe is configured in a second period of the subframe.

CA2648166C, drawing sheet 1
Sheet 1 of 20

Term

0.6 yearsleft in the term

Expires 19 April 2027.

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

70 claims: 31 independent, 39 dependent

  1. 1
    CA 02648166 2011-11-16 The embodiments of the invention in which an exclusive property or privilege is claimed are defined as follows:1. A method for configuring a subframe in order to support a relay service in a wireless communication system, comprising: configuring a Base Station(BS)-Mobile Station(MS) link subframe, a primary Relay Station(RS)-MS link subframe, and a BS-secondary RS link subframe in a first period of the subframe, the BS-MS link subframe being a subframe for a link between a BS and an MS, the primary RS-MS link subframe being a subframe for a link between a primary RS that provides a synchronization channel and an MS, and the BS-secondary RS link subframe being a subframe for a link between the BS and a secondary RS that does not provide a synchronization channel;and configuring at least one of a BS-primary RS link subframe, an RS-RS link subframe, and a secondary RS-MS link subframe in a second period of the subframe, the BS-primary RS link subframe being a subframe for a link between the BS and the primary RS, an RS-RS link subframe being a subframe for a link between an RS and another RS, and a secondary RS-MS link subframe being a subframe for a link between the secondary RS and an MS.
  2. 4
    The method of any one of claims 1 to 3, wherein the subframe is a downlink subframe, wherein the subframe configuration in the first period of the subframe comprises providing a synchronization channel at the start of the first period in the downlink subframe and the subframe configuration in the second period of the subframe comprises providing a synchronization channel at the end of the second period in the downlink subframe. CA 02648166 2011-11-16
  3. 5
    The method of any one of claims 1 to 3, wherein the subframe is an uplink subframe, wherein the subframe configuration in the first period of the subframe comprises providing a ranging channel at the start of the first period in the uplink subframe and the subframe configuration in the second period of the subframe comprises providing a ranging channel at the end of the second period in the uplink subframe.
  4. 9
    The method of any one of claims 1 to 8, wherein the subframe configuration in the second period of the subframe comprises configuring at least one of the BS-primary RS link subframe, at least one RS-RS link subframe, and the secondary RS-MS link subframe in the second period of the subframe.
  5. 11
    The method of any one of claims 1 to 8, wherein the subframe configuration in the second period of the subframe comprises configuring the BS-primary RS link subframe, the RS-RS link subframe, and the secondary RS-MS link subframe by one of CA 02648166 2011-11-16 FDMA, SDMA, and OFDMA.
  6. 12
    A method for configuring a downlink subframe in order to support a relay service in a wireless communication system, comprising:configuring a Base Station(BS)-Mobile Station(MS) link subframe and a Relay Station(RS)-MS link subframe in a first period of the downlink subframe, the BS-MS link subframe being a subframe for a link between a BS and an MS and the RS-MS link subframe being a subframe for a link between an RS and an MS;configuring a 1 st group RS-2 nd group next-hop RS link subframe in a second period of the downlink subframe, the 1 st group RS-2 nd group next-hop RS link subframe being a subframe for a link between an RS of a first group including odd-hop RSs and a next-hop RS of a second group including even-hop RSs;and configuring a BS-1-hop RS link subframe and a 2 nd group RS-l st group next-hop RS link subframe in a third period of the downlink subframe, the BS-1-hop RS link subframe being a subframe for a link between the BS and a 1-hop RS and the 2 nd group RS-l st group next-hop RS link subframe being a subframe for a link between an RS of the second group and a next-hop RS of the first group.
  7. 15
    The method of any one of claims 12 to 14, wherein the subframe configuration in the second period of the downlink subframe comprises providing a synchronization channel at the end of the 1 st group RS-2 nd group next-hop RS link subframe in the second period of the downlink subframe.
  8. 19
    The method of any one of claims 12 to 18, wherein the subframe configuration in the third period of the subframe comprises providing a synchronization channel at the end of the BS-l-hop RS link subframe and a synchronization channel at the end of the 2 nd group RS-l st group next-hop RS link subframe.
  9. 22
    The method of any one of claims 12 to 21, further comprising:configuring a BS-MS link subframe and a 1 st group last-hop RS-MS link subframe in the second period of the downlink subframe, the BS-MS link subframe being a subframe for a link between the BS and an MS and the 1 st group last-hop RS-MS link subframe being a subframe for a link between a last-hop RS included in the first group and an MS;and configuring a 2 nd group last-hop RS-MS link subframe in the third period of the downlink subframe, the 2 nd group last-hop RS-MS link subframe being a subframe for a link between a last-hop RS included in the second group and an MS.
  10. 23
    A method for configuring a downlink subframe in order to support a relay service in a wireless communication system, comprising:CA 02648166 2011-11-16 configuring a Base Station(BS)-Mobile Station(MS) link subframe and a Relay Station(RS)-MS link subframe in a first period of the downlink subframe, the BS-MS link subframe being a subframe for a link between a BS and an MS and the RS-MS link subframe being a subframe for a link between an RS and an MS;configuring a BS-l-hop RS link subframe and a 2 nd group RS-l st group next-hop RS link subframe in a second period of the downlink subframe, the BS-l-hop RS link subframe being a subframe for a link between the BS and a 1-hop RS and the 2 nd group RS-l st group next-hop RS link subframe being a subframe for a link between an RS of a second group including even-hop RSs and a next-hop RS of a first group including oddhop RSs;and configuring a 1 st group RS-2 nd group next-hop RS link subframe in a third period of the downlink subframe, the 1 st group RS-2 nd group next-hop RS link subframe being a subframe for a link between an RS of the first group and a next-hop RS of the second group.
  11. 26
    The method of any one of claims 23 to 25, wherein the subframe configuration in the second period of the downlink subframe comprises providing synchronization channel at the end of the BS-l-hop RS link subframe and a synchronization channel at the end of the 2 nd group RS-l st group next-hop RS link subframe in the second period of the downlink subframe.
  12. 30
    The method of any one of claims 23 to 29, wherein the subframe configuration in the third period of the subframe comprises providing a synchronization channel at the end of the 1 st group RS-2 nd group next-hop RS link subframe.
  13. 33
    The method of any one of claims 23 to 32, further comprising:configuring a 2 nd group last-hop RS-MS link subframe in the second period of the downlink subframe, the 2 nd group last-hop RS-MS link subframe being a subframe for a link between a last-hop RS included in the second group and an MS;and configuring a BS-MS link subframe and a 1 st group last-hop RS-MS link subframe in the third period of the downlink subframe, the BS-MS link subframe being a subframe for a link between the BS and an MS and the 1 st group last-hop RS-MS link subframe being a subframe for a link between a last-hop RS included in the first group and an MS.
  14. 34
    A method for configuring an uplink subframe in a wireless communication system, comprising:configuring a Mobile Station(MS)-Base Station(BS) link subframe and an MSRelay Station(RS) link subframe in a first period of the uplink subframe, the MS-BS link subframe being a subframe for a link between an MS and a BS and the MS-RS link CA 02648166 2011-11-16 subframe being a subframe for a link between an MS and an RS;configuring a 2 nd group RS-l st group previous-hop RS link subframe in a second period of the uplink subframe, the 2 nd group RS-l st group previous-hop RS link subframe being a subframe for a link between an RS of a second group including even-hop RSs and a previous-hop RS of a first group including odd-hop RSs;and configuring a 1-hop RS-BS link subframe and a 1 st group RS-2 nd group previoushop RS link subframe in a third period of the uplink subframe, the 1-hop RS-BS link subframe being a subframe for a link between a 1-hop RS and the BS and the 1 st group RS-2 nd group previous-hop RS link subframe being a subframe for a link between an RS of the first group and a previous-hop RS of the second group.
  15. 37
    A method for configuring an uplink subframe in a wireless communication system, comprising:configuring a Mobile Station(MS)-Base Station(BS) link subframe and an MSRelay Station(RS) link subframe in a first period of the uplink subframe, the MS-BS link subframe being a subframe for a link between an MS and a BS and the MS-RS link subframe being a subframe for a link between an MS and an RS;configuring a 1-hop RS-BS link subframe and a 1 st group RS-2 nd group previoushop RS link subframe in a second period of the uplink subframe, the 1-hop RS-BS link subframe being a subframe for a link between a 1-hop RS and the BS and the 1 st group CA 02648166 2012-12-13 RS-2 nd group previous-hop RS link subframe being a subframe for a link between an RS of a first group including odd-hop RSs and a previous-hop RS of a second group including even-hop RSs;and configuring a 2 nd group RS-l st group previous-hop RS link subframe in a third period of the uplink subframe, the 2 nd group RS-l st group previous-hop RS link subframe being a subframe for a link between an RS of the second group and a previous-hop RS of the first group.
  16. 40
    A method of a Base Station(BS) in a wireless communication system, comprising:allocating resources to a first period and a second period of a subframe, the first period being for communicating with a Mobile Station(MS) and a secondary Relay Station(RS) that does not provide a synchronization channel and the second period being for communicating with a primary RS that provides a synchronization channel;communicating with the MS and the secondary RS in the first period of the subframe;and communicating with the primary RS in the second period of the subframe.
  17. 44
    The method of any one of claims 40 to 43, wherein the first period and the second period are distinguished by one of time division and frequency division.
  18. 45
    The method of any one of claims 40 to 44, wherein if the RS is a multi-hop RS, the resource allocation comprises dividing the second period into a plurality of periods and allocating resources to the plurality of periods.
  19. 46
    A method of a primary Relay Station(RS) that provides a synchronization channel in a wireless communication system, comprising:setting a first period and a second period according to control information received from an upper node, the first period being for communicating with a Mobile Station(MS) and the second period being for communicating with at least one of the upper node and a lower RS;communicating with the MS in the first period;and communicating with the at least one of the upper node and the lower RS in the second period, wherein the communication in the second period is performed using at least one of an upper node-primary RS link subframe and a primary RS-lower RS link subframe, wherein the upper node-primary RS link subframe and the primary RS-lower RS CA 02648166 2011-11-16 link subframe are allocated a resource which is different from a resource allocated to a secondary RS-MS link subframe for a link between the MS and a secondary RS in the second period, wherein the secondary RS does not provide a synchronization channel, and wherein the resource includes at least one of time and frequency.
  20. 49
    The method of any one of claims 46 to 48, wherein the upper node is one of a Base Station (BS) and an upper RS.
  21. 50
    The method of any one of claims 46 to 49, further comprising communicating with the secondary RS in the first period.
  22. 51
    The method of any one of claims 46 to 50, wherein if the wireless communication system spans at least three hops, the communication in the second period comprises;checking information about segmentation of the second period according to the control information;communicating with the lower RS in a first area of the second period;and communicating with the upper node in a second area of the second period.
  23. 53
    The method of any one of claims 46 to 50, wherein if the wireless communication system spans at least three hops, the communication in the second period comprises:checking information about segmentation of the second period according to the control information;CA 02648166 2011-11-16 communicating with the upper node in a first area of the second period;and communicating with the lower RS in a second area of the second period.
  24. 55
    A method of a secondary Relay Station(RS) that does not provide a synchronization channel in a wireless communication system, comprising:setting a first period and a second period according to control information received from an upper node, the first period being for communicating with the upper node and the second period being for communicating with a Mobile Station(MS);communicating with the upper node in the first period;and communicating with the MS in the second period, wherein the communication in the second period is performed using a secondary RS-MS link subframe, wherein the secondary RS-MS link subframe is allocated a resource which is different from a resource allocated to an upper node-primary RS link subframe for a link between the upper node and a primary RS in the second period, wherein the primary RS provides a synchronization channel, and wherein the resource includes at least one of time and frequency.
  25. 58
    The method of any one of claims 55 to 57, wherein the upper node is one of a Base Station (BS) and an upper RS.
  26. 59
    An apparatus of a Base Station(BS) in a wireless communication system, comprising:CA 02648166 2012-12-13 a timing controller for providing a timing signal for transmission and reception according to a subframe configuration in which a first period and a second period are defined, the first period being for communicating with a Mobile Station(MS) and a secondary Relay Station(RS) that does not provide a synchronization channel and the second period being for communicating with a primary RS that provides a synchronization channel;a transmitter for generating one of a first period signal and a second period signal according to the timing signal and transmitting the generated signal;and a receiver for receiving one of the first period signal and the second period signal according to the timing signal and recovering the received signal.
  27. 62
    The apparatus of any one of claims 59 to 61, wherein the receiver receives a signal from the at least one of the MS and the secondary RS in the first period, and receives a signal from the primary RS in the second period.
  28. 63
    An apparatus of a primary Relay Station(RS) that provides a synchronization channel in a wireless communication system, comprising:a timing controller for providing a timing signal for transmission and reception according to a subframe configuration in which a first period and a second period are defined, the first period being for communicating with at least one of a Mobile Station(MS) and a secondary RS that does not provide a synchronization channel and the second period being for communicating with an upper node;a transmitter for generating one of a first period signal and a second period signal CA 02648166 2011-11-16 according to the timing signal and transmitting the generated signal;and a receiver for receiving one of the first period signal and the second period signal according to the timing signal and recovering the received signal, wherein the transmitter and the receiver uses an upper node-primary RS link subframe in the second period, wherein the upper node-primary RS link subframe is allocated a resource which is different from a resource allocated to a secondary RS-MS link subframe for a link between the MS and the secondary RS in the second period, and wherein the resource includes at least one of time and frequency.
  29. 66
    The apparatus of any one of claims 63 to 65, wherein the upper node is one of a Base Station (BS) and an upper RS.
  30. 67
    An apparatus of a Relay Station(RS) that does not provide a synchronization channel in a wireless communication system, comprising:a timing controller for providing a timing signal for transmission and reception according to a subframe configuration in which a first period and a second period are defined, the first period being for communicating with an upper node and the second period being for communicating with a Mobile Station(MS);a transmitter for generating one of a first period signal and a second period signal according to the timing signal and transmitting the generated signal;and a receiver for receiving one of the first period signal and the second period signal according to the timing signal and recovering the received signal. CA 02648166 2011-11-16
  31. 70
    The apparatus of any one of claims 67 to 69, wherein the upper node is one of a Base Station (BS) and an upper RS.
Independent claims31